spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Abrieu, A.
Right arrow Articles by Fisher, D.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Abrieu, A.
Right arrow Articles by Fisher, D.
Abrieu, A., Lorca, T., Labbe, J. C., Morin, N., Keyse, S. and Doree, M (1996). MAP kinase does not inactivate, but rather prevents the cyclin degradation pathway from being turned on in Xenopus egg extracts. J. Cell Sci 109, 239-246.[Abstract]

Abrieu, A., Doree, M. and Picard, A (1997). Mitogen-activated protein kinase activation down-regulates a mechanism that inactivates cyclin-B-Cdc2 kinase in G2-arrested oocytes. Mol. Biol. Cell 8, 249-261.[Abstract]

Abrieu, A., Fisher, D., Simon, M. N., Doree, M. and Picard, A (1997). MAP kinase inactivation is required for the G2to M-phase transition of the first mitotic cell-cycle. EMBO J 16, 6407-6413.[Medline]

Adachi, Y. and Laemmli, U. K (1994). Study of the cell cycle-dependent assembly of the DNA pre-replication centres in Xenopus egg extracts. EMBO J 13, 4153-4164.[Medline]

Ballantine, S., Daniel, D. L. and Wickens, M (1997). A dependent pathway of cytoplasmic polyadenylation reactions linked to cell cycle control by c-mos and CDK1 activation. Mol. Biol. Cell 8, 1633-1648.[Abstract]

Bhatt, R. R. and Ferrell, J. E (1999). The protein kinase p90rskas an esstial mediator of cytostatic factor activity. Science 286, 1362-1365.[Abstract/Free Full Text]

Bitangcol, J. C., Chau, A. S., Stadnick, E., Lohka, M. J., Dicken, B. and Shibuya, E. K (1998). Activation of the p42 mitogen-activated protein kinase pathway inhibits Cdc2 activation and entry into M-phase in cycling Xenopus egg extracts. Mol. Biol. Cell 9, 451-467.[Abstract/Free Full Text]

Brunet, S., Maria, A. S., Guillaud, P., Dujardin, D., Kubiak, J. Z. and Maro, B (1999). Kinetochore fibers are not involved in the formation of the first meiotic spindle in mouse oocytes, but control the exit from the first meiotic M phase. J. Cell Biol 146, 1-12.[Abstract/Free Full Text]

Busa, W. B. and Nuccitelli, R (1985). An elevated free cytosolic Ca2+wave follows fertilization in eggs of the frog Xenopus laevis. J. Cell Biol 100, 1325-1329.[Abstract/Free Full Text]

Chau, A. S. and Shibuya, E. K (1998). Mos-induced p42 mitogen-activated protein kinase activation stabilizes M-phase in Xenopus egg extracts after cyclin destruction. Biol. Cell 90, 565-572.[Medline]

Choi, T., Fukasawa, K., Zhou, R., Tessarollo, L., Borror, K., Resau, J. and Vande Woude, G. F (1996). The Mos/mitogen-activated protein kinase (MAPK) pathway regulates the size and degradation of the first polar body in maturing mouse oocytes. Proc. Nat. Acad. Sci. USA 93, 7032-7035.[Abstract/Free Full Text]

Ciemerych, M. A. and Kubiak, J. Z (1998). Cytostatic activity develops during meiosis I in oocytes of LT/Sv mice. Dev. Biol 200, 198-211.[Medline]

Ciemerych, M. A. and Kubiak, J. Z (1999). Transient reactivation of CSF in parthenogenetic one-cell mouse embryos. Biol. Cell 91, 641-647.[Medline]

Colledge, W. H., Carlton, M. B., Udy, G. B. and Evans, M. J (1994). Disruption of c-mos causes parthenogenetic development of unfertilized mouse eggs. Nature 370, 65-68.[Medline]

Cubizolles, F., Legagneux, V., Le Guellec, R., Chartrain, I., Uzbekov, R., Ford, C. and Le Guellec, K (1998). pEg7, a new Xenopus protein required for mitotic chromosome condensation in egg extracts. J. Cell Biol 143, 1437-1446.[Abstract/Free Full Text]

Daar, I., Paules, R. S. and Vande Woude, W. G (1991). A characterization of cytostatic factor activity from Xenopus eggs and c-mos-transformed cells. J. Cell Biol 114, 329-335.[Abstract/Free Full Text]

de Moor, C. H. and Richter, J. D (1997). The Mos pathway regulates cytoplasmic polyadenylation in Xenopus oocytes. Mol. Cell. Biol 17, 6419-6426.[Abstract]

de Moor, C. H. and Richter, J. D (1999). Cytoplasmic polyadenylation elements mediate masking and unmasking of cyclin B1 mRNA. EMBO J 18, 2294-2303.[Medline]

Descombes, P. and Nigg, E. A (1998). The polo-like kinase Plx1 is required for M phase exit and destruction of mitotic regulators in Xenopus egg extracts. EMBO J 17, 1328-1335.[Medline]

Digonnet, C., Aldon, D., Leduc, N., Dumas, C. and Rougier, M (1997). First evidence of a calcium transient in flowering plants at fertilization. Development 124, 2867-2874.[Abstract]

Draetta, G., Luca, F., Westendorf, J., Brizuela, L., Ruderman, J. and Beach, D (1989). Cdc2 protein kinase is complexed with both cyclin A and B: evidence for proteolytic inactivation of MPF. Cell 56, 829-838.[Medline]

Felix, M. A., Labbe, J. C., Doree, M., Hunt, T. and Karsenti, E (1990). Triggering of cyclin degradation in interphase extracts of amphibian eggs by Cdc2 kinase. Nature 346, 379-382.[Medline]

Ferby, I., Blazquez, M., Palmer, A., Eritja, R. and Nebreda, A. R (1999). A novel p34(cdc2)-binding and activating protein that is necessary and sufficient to trigger G(2)/M progression in Xenopus oocytes. Genes Dev 13, 2177-2189.[Abstract/Free Full Text]

Ferrell, J. E. Jr, Wu, M., Gerhart, J. C. and Martin, G. S (1991). Cell cyclephosphorylation of p34cdc2and a microtubule associated protein kinase homolog in Xenopus oocytes and eggs. Mol. Cell. Biol 11, 1965-1971.[Abstract/Free Full Text]

Ferrell, J. E. Jr (1999). Xenopus oocyte maturation: new lessons from a good egg. BioEssays 21, 833-842.[Medline]

Fisher, D., Abrieu, A., Simon, M. N., Keyse, S., Verge, V., Doree, M. and Picard, A (1998). MAP kinase inactivation is required only for G2-M phase transition in early embryogenesis cell cycles of the starfishes Marthasterias glacialis and Astropecten aranciacus. Dev. Biol 202, 1-13.[Medline]

Fisher, D., Coux, O., Bompard-Marechal, G. and Doree, M (1998). Germinal vesicle material is dispensable for oscillations in Cdc2 and MAP kinase activities, cyclin B degradation and synthesis during meiosis in Xenopus oocytes. Biol. Cell 90, 497-508.[Medline]

Fisher, D. L., Brassac, T., Galas, S. and Doree, M (1999). Dissociation of MAP kinase activation and MPF activation in hormone-stimulated maturation of Xenopus oocytes. Development 126, 4537-4546.[Abstract]

Fisher, D. L., Mandart, E. and Doree, M (2000). Hsp90 is required for c-Mos activation and biphasic MAP kinase activation in Xenopus oocytes. EMBO J 19, 101-110.

Frank-Vaillant, M., Jessus, C., Ozon, R., Maller, J. L. and Haccard, O (1999). Two distinct mechanisms control the accumulation of cyclin B1 and Mos in Xenopus oocytes in response to progesterone. Mol. Biol. Cell 10, 3279-3288.[Abstract/Free Full Text]

Furuno, N., Nishizawa, M., Okazaki, K., Tanaka, H., Iwashita, J., Nakajo, N., Ogawa, Y. and Sagata N (1994). Suppression of DNA replication via Mos function during meiotic divisions in Xenopus oocytes. EMBO J 13, 2399-2410.[Medline]

Galas, S., Barakat, H., Doree, M. and Picard, A (1993). A nuclear factor required for specific translation of cyclinB may control the timing of first meiotic cleavage in starfish oocytes. Mol. Biol. Cell 4, 1295-1306.[Abstract]

Gautier, J., Minshull, J., Lohka, M., Glotzer, M., Hunt, T. and Maller, J. L (1990). Cyclin is a component of maturation-promoting factor from Xenopus. Cell 60, 487-494.[Medline]

Gotoh, Y., Masuyama, N., Dell, K., Shirakabe, K. and Nishida, E (1995). Initiation of Xenopus oocyte maturation by activation of the mitogen-activated protein kinase cascade. J. Biol. Chem 270, 25898-25904.[Abstract/Free Full Text]

Groigno, L. and Whitaker, M (1998). An anaphase calcium signal controls chromosome disjunction in early sea urchin embryos. Cell 92, 193-204.[Medline]

Gross, S. D., Schwab, M. S., Lewellyn, A. L., Maller, J. L (1999). Induction of metaphase arrest in cleaving Xenopus embryos by the protein kinase p90Rsk. Science 286, 1365-1367.[Abstract/Free Full Text]

Gross, S. D., Schwab, M. S., Taieb, F. E., Lewellyn, A. L., Qian, Y. W. and Maller, J. L (2000). The critical role of the MAP kinase pathway in meiosis II in Xenopus oocytes is mediated by p90rsk. Curr. Biol 10, 430-438.[Medline]

Guadagno, T. M. and Ferrell, J. E., Jr (1998). Requirement for MAPK activation for normal mitotic progression in Xenopus egg extracts. Science 282, 1312-1315.[Abstract/Free Full Text]

Haccard, O., Jessus, C., Cayla, X., Goris, J., Merlevede, W. and Ozon, R (1990). In vivo activation of a microtubule-associated protein kinase during meiotic maturation of the Xenopus oocyte. Eur. J. Biochem 192, 633-642.[Medline]

Haccard, O., Sarcevic, B., Lewellyn, A., Hartley, R., Roy, L., Izumi, T. Maller, J. L (1993). Induction of metaphase arrest in cleaving Xenopus embryos by MAP kinase. Science 262, 1262-1265.[Abstract/Free Full Text]

Hartley, R. S., Lewellyn, A. L. and Maller, J. L (1994). MAP kinase is activated during mesoderm induction in Xenopus laevis. Dev. Biol 163, 521-524.[Medline]

Hashimoto, N., Watanabe, N., Furuta, Y., Tamemoto, H., Sagata, N., Yokoyama, M., Okazaki, K., Nagayoshi, M., Takeda, N., Ikawa, Y. et al (1994). Parthenogenetic activation of oocytes in c-mos-deficient mice. Nature 370, 68-71.[Medline]

Hashimoto, N. and Kishimoto, T (1988). Regulation of meiotic metaphase by a cytoplasmic maturation-promoting factor during mouse oocyte maturation. Dev. Biol 126, 242-252.[Medline]

Hayles, J., Fisher, D., Woollard, A. and Nurse, P (1994). Temporal order of S phase and mitosis in fission yeast is determined by the state of the p34cdc2/cyclin B complex. Cell 78, 813-822.[Medline]

Howard, E. L., Charlesworth, A., Welk, J. and MacNicol, A. M (1999). The mitogen-activated protein kinase signaling pathway stimulates mos mRNA cytoplasmic polyadenylation during Xenopus oocyte maturation. Mol. Cell. Biol 19, 1990-1999.[Abstract/Free Full Text]

Hunt, T., Luca, F. C. and Ruderman, J. V (1992). The requirements for protein synthesis and degradation, and the control of destruction of cyclins A and B in the meiotic and mitotic cell cycles of the clam embryo. J. Cell Biol 116, 707-724.[Abstract/Free Full Text]

Izumi, T. and Maller, J. L (1991). Phosphorylation of Xenopus cyclins B1and B2 is not required for cell cycle transitions. Mol. Cell. Biol 11, 3860-3867.[Abstract/Free Full Text]

Kamieniecki, R. J., Shanks, R. Q. and Dawson, D. S (2000). Slk19p is necessary to prevent separation of sister chromatids in meiosis I. Curr. Biol 10, 1182-1190.[Medline]

Kanki, J. P. and Donoghue, D. J (1991). Progression from meiosis I to meiosis II in Xenopus oocytes requires de novo translation of the mosxeprotooncogene. Proc. Nat. Acad. Sci. USA 88, 5794-5798.[Abstract/Free Full Text]

Katsu, Y., Yamashita, M., Kajiura, H. and Nagahama, Y (1993). Behavior of the components of maturation-promoting factor, Cdc2 kinase and cyclin B, during oocyte maturation of goldfish. Dev. Biol 60, 99-107.

Klein, F., Mahre, P., Galova, M., Buonomo, S. B., Michaelis, C., Nairz, K. and Nasmyth, K (1999). A central role for cohesins in sister chromatid cohesion, formation of axial elements, and recombination during yeast meiosis. Cell 98, 91-103.[Medline]

Kobayashi, H., Minshull, J., Ford, C., Golsteyn, R., Poon, R. and Hunt, T (1991). On the synthesis and destruction of A-and B-type cyclins during oogenesis and meiotic maturation in Xenopus laevis. J. Cell Biol 114, 755-765.[Abstract/Free Full Text]

Kosako, H., Gotoh, Y. and Nishida, E (1994). Requirement for the MAP kinase kinase/MAP kinase cascade in Xenopus oocyte maturation. EMBO J 13, 2131-2138.[Medline]

Kubiak, J. Z., Weber, M., de, Pennart, H., Winston, N. J. and Maro, B (1993). The metaphase II arrest in mouse oocytes is controlled through microtubule-dependent destruction of cyclin B in the presence of CSF. EMBO J 12, 3773-3778.[Medline]

LaBonne, C., Burke, B. and Whitman, M (1995). Role of MAP kinase in mesoderm induction and axial patterning during Xenopus development. Development 121, 1475-1486.[Abstract]

Labbe, J. C., Capony, J. P., Caput, D., Cavadore, J. C., Derancourt, J., Kaghad, M., Lelias, J. M., Picard, A. and Doree, M (1989). MPF from starfish oocytes at first meiotic metaphase is a heterodimer containing one molecule of Cdc2 and one molecule of cyclin B. EMBO J 8, 3053-3058.[Medline]

Lee, J., Miyano, T. and Moor, R. M (2000). Localisation of phosphorylated MAP kinase during the transition from meiosis I to meiosis II in pig oocytes. Zygote 8, 119-125.[Medline]

Li, J., Meyer, A. N. and Donoghue, D. J (1997). Nuclear localization of cyclin B1 mediates its biological activity and is regulated by phosphorylation. Proc. Nat. Acad. Sci. USA 94, 502-507.[Abstract/Free Full Text]

Lindsay, H. D., Whitaker, M. J. and Ford, C. C (1995). Calcium requirements during mitotic cdc2 kinase activation and cyclin degradation in Xenopus egg extracts. J. Cell Sci 108, 3557-3568.[Abstract]

Lorca, T., Galas, S., Fesquet, D., Devault, A., Cavadore, J. C. and Doree, M (1991). Degradation of the proto-oncogene product p39mos is not necessary for cyclin proteolysis and exit from meiotic metaphase: requirement for a Ca(2+)-calmodulin dependent event. EMBO J 10, 2087-2093.[Medline]

Lorca, T., Labbe, J. C., Devault, A., Fesquet, D., Strausfeld, U., Nilsson, J., Nygren, P. A., Uhlen, M., Cavadore, J. C. and Doree, M (1992). Cyclin A-Cdc2 kinase does not trigger but delays cyclin degradation in interphase extracts of amphibian eggs. J. Cell Sci 102, 55-62.[Abstract/Free Full Text]

Lorca, T., Cruzalegui, F. H., Fesquet, D., Cavadore, J. C., Mery, J., Means, A. and Doree, M (1993). Calmodulin-dependent protein kinase II mediates inactivation of MPF and CSF upon fertilization of Xenopus eggs. Nature 366, 270-273.[Medline]

Lorca, T., Castro, A., Martinez, A. M., Vigneron, S., Morin, N., Sigrist, S., Lehner, C., Doree, M. and Labbe, J. C (1998). Fizzy is required for activation of the APC/cyclosome in Xenopus egg extracts. EMBO J 17, 3565-3575.[Medline]

Losada, A., Hirano, M. and Hirano, T (1998). Identification of Xenopus SMC protein complexes required for sister chromatid cohesion. Genes Dev 12, 1986-1997.[Abstract/Free Full Text]

Losada, A., Yokochi, T., Kobayashi, R. and Hirano, T (2000). Identification and characterization of SA/SCC 3p subunits in the Xenopus and human cohesin complexes. J. Cell Biol 150, 405-416.[Abstract/Free Full Text]

Luca, F. C., Shibuya, E. K., Dohrmann, C. E. and Ruderman, J. V (1991). Both cyclin A delta 60 and B delta 97 are stable and arrest cells in M-phase, but only cyclin B delta 97 turns on cyclin degradation. EMBO J 10, 4311-4320.[Medline]

MacNicol, A. M., Muslin, A. J., Howard, E. L., Kikuchi, A., MacNicol, M. C. and Williams, L. T (1995). Regulation of Raf-1-dependent signaling during early Xenopus development. Mol. Cell. Biol 15, 6686-6693.[Abstract]

Masui, Y. and Markert, C. L (1971). Cytoplasmic control of nuclear behavior during meiotic maturation of frog oocytes. J. Exp. Zool 177, 129-145.[Medline]

Minshull, J., Murray, A., Colman, A. and Hunt, T (1991). Xenopus oocyte maturation does not require new cyclin synthesis. J. Cell Biol 114, 767-772.[Abstract/Free Full Text]

Minshull, J., Sun, H., Tonks, N. K. and Murray, A. W (1994). A MAP kinase-dependent spindle assembly checkpoint in Xenopus egg extracts. Cell 79, 475-486.[Medline]

Morin, N., Abrieu, A., Lorca, T., Martin, F. and Doree, M (1994). The proteolysis-dependent metaphase to anaphase transition: calcium/calmodulin-dependent protein kinase II mediates onset of anaphase in extracts prepared from unfertilized Xenopus eggs. EMBO J 13, 4343-4352.[Medline]

Murakami, M. S., Copeland, T. D. and Vande, Woude, G. F (1999). Mos positively regulates Xe-Wee1 to lengthen the first mitotic cell cycle of Xenopus. Genes Dev 13, 620-631.[Abstract/Free Full Text]

Nebreda, A. R., Gannon, J. V. and Hunt, T (1995). Newly synthesized protein(s) must associate with p34Cdc2 to activate MAP kinase and MPF during progesterone-induced maturation of Xenopus oocytes. EMBO J 14, 5597-5607.[Medline]

Ohsumi, K., Sawada, W. and Kishimoto, T (1994). Meiosis-specific cellcycle regulation in maturing Xenopus oocytes. J. Cell Sci 107, 3005-3013.[Abstract]

O'Keefe, S. J., Kiessling, A. A. and Cooper G. M (1991). The c-mos gene product is required for cyclin B accumulation during meiosis of mouse eggs. Proc. Nat. Acad. Sci. USA 88, 7869-7872.[Abstract/Free Full Text]

Okumura, E., Sekiai, T., Hisanaga, S., Tachibana, K. and Kishimoto, T (1996). Initial triggering of M-phase in starfish oocytes: A possible novel component of maturation-promoting factor besides Cdc2 kinase. J. Cell Biol 132, 125-135.[Abstract/Free Full Text]

Palmer, A., Gavin, A. C. and Nebreda, A. R (1998). A link between MAP kinase and p34(Cdc2)/cyclin B during oocyte maturation: p90(rsk) phosphorylates and inactivates the p34(Cdc2) inhibitory kinase Myt1. EMBO J 17, 5037-5047.[Medline]

Picard, A., Peaucellier, G., le Bouffant, F., Le Peuch, C. and Doree, M (1985). Role of protein synthesis and proteases in production and inactivation of maturation-promoting activity during meiotic maturation of starfish oocytes. Dev. Biol 109, 311-320.[Medline]

Picard, A., Labbe, J. C., Barakat, H., Cavadore, J. C. and Doree, M (1991). Okadaic acid mimics a nuclear component required for cyclin-B-Cdc2 kinase microinjection to drive starfish oocytes into M phase. J. Cell Biol 115, 337-344.[Abstract/Free Full Text]

Picard, A., Galas, S., Peaucellier, G. and Doree, M (1996). Newly assembled cyclin-B-Cdc2 kinase is required to suppress DNA replication between meiosis I and meiosis II in starfish oocytes. EMBO J 15, 3590-3598.[Medline]

Polanski, Z., Ledan, E., Brunet, S., Louvet, S., Verlhac, M. H., Kubiak, J. Z. and Maro, B (1998). Cyclin synthesis controls the progression of meiotic maturation in mouse oocytes. Development 125, 4989-4997.[Abstract]

Ridgway, E. B., Gilkey, J. C. and Jaffe, L. F (1977). Free calcium increases explosively in activating medaka eggs. Proc. Nat. Acad. Sci. USA 74, 623-627.[Abstract/Free Full Text]

Sagata, N., Watanabe, N., Vande Woude, G. F. and Ikawa, Y (1989). The c-mos proto-oncogene product is a cytostatic factor responsible for meiotic arrest in vertebrate eggs. Nature 342, 512-518.[Medline]

Sagata, N (1997). What does Mos do in oocytes and somatic cells?. BioEssays 19, 13-21.[Medline]

Shapiro, P. S., Vaisberg, E., Hunt, A. J., Tolwinski, N. S., Whalen, A. M., McIntosh, J. R. and Ahn, N. G (1998). Activation of the MKK/ERK pathway during somatic cell mitosis: direct interactions of active ERK with kinetochores and regulation of the mitotic 3F3/2 phosphoantigen. J. Cell Biol 142, 1533-1545.[Abstract/Free Full Text]

Shibuya, E. K., Boulton, T. G., Cobb, M. H. and Ruderman, J. V (1992). Activation of p42 MAP kinase and the release of oocytes from cell cycle arrest. EMBO J 11, 3963-3975.[Medline]

Shteinberg, M., Protopopov, Y., Listovsky, T., Brandeis, M. and Hershko, A (1999). Phosphorylation of the cyclosome is required for its stimulation by Fizzy/Cdc20. Biochem. Biophys. Res. Commun 260, 193-198.[Medline]

Steinhardt, R., Zucker, R. and Schatten, G (1977). Intracellular calcium release at fertilization in the sea urchin egg. Dev. Biol 58, 185-196.[Medline]

Tachibana, K., Machida, T., Nomura, Y. and Kishimoto, T (1997). MAP kinase links the fertilization signal transduction pathway to the G1/S-phase transition in starfish eggs. EMBO J 16, 4333-4339.[Medline]

Takenaka, K., Moriguchi, T. and Nishida, E (1998). Activation of theprotein kinase p38 in the spindle assembly checkpoint and mitotic arrest. Science 280, 599-602.[Abstract/Free Full Text]

Thibier, C., De, Smedt, V., Poulhe, R., Huchon, D., Jessus, C. and Ozon, R (1997). In vivo regulation of cytostatic activity in Xenopus metaphase II-arrested oocytes. Dev. Biol 185, 55-66.[Medline]

Verlhac, M. H., de Pennart, H., Maro, B., Cobb, M. H. and Clarke, H. J (1993). MAP kinase becomes stably activated at metaphase and is associated with microtubule-organizing centers during meiotic maturation of mouse oocytes. Dev. Biol 158, 330-340.[Medline]

Verlhac, M. H., Kubiak, J. Z., Clarke, H. J. and Maro, B (1994). Microtubule and chromatin behavior follow MAP kinase activity but not MPF activity during meiosis in mouse oocytes. Development 120, 1017-1025.[Abstract]

Verlhac, M. H., Kubiak, J. Z., Weber, M., Geraud, G., Colledge, W. H., Evans, M. J. and Maro, B (1996). Mos is required for MAP kinase activation and is involved in microtubule organization during meiotic maturation in the mouse. Development 122, 815-822.[Abstract]

Vorlaufer, E. and Peters, J. M (1998). Regulation of the cyclin B degradation system by an inhibitor of mitotic proteolysis. Mol. Biol. Cell 9, 1817-1831.[Abstract/Free Full Text]

Walter, S. A., Guadagno, T. M. and Ferrell, J. E. Jr (1997). Induction of a G2-phase arrest in Xenopus egg extracts by activation of p42 mitogen-activated protein kinase. Mol. Biol. Cell 11, 2157-2169.

Walter, S. A., Guadagno, S. N. and Ferrell, J. E. Jr (2000). Activation of Wee1 by p42 MAP kinase in vitro and in cycling Xenopus egg extracts. Mol. Biol. Cell 11, 887-896.[Abstract/Free Full Text]

Wang, X. M., Zhai, Y. and Ferrell, J. E., Jr (1997). A role for mitogen-activated protein kinase in the spindle assembly checkpoint in XTC cells. J. Cell Biol 137, 433-443.[Abstract/Free Full Text]

Wasserman, W. J. and Masui, Y (1975). Effects of cycloheximide on a cytoplasmic factor initiating meiotic naturation in Xenopus oocytes. Exp. Cell Res 91, 381-388.[Medline]

Watanabe, N., Hunt, T., Ikawa, Y. and Sagata, N (1991). Independent inactivation of MPF and cytostatic factor (Mos) upon fertilization of Xenopus eggs. Nature 352, 247-248.[Medline]

Watanabe, Y. and Nurse, P (1999). Cohesin Rec8 is required for reductional chromosome segregation at meiosis. Nature 400, 461-464.[Medline]

Yamashita, M., Fukada, S., Yoshikuni, M., Bulet, P., Hirai, T., Yamaguchi, A., Lou, Y. H., Zhao, Z. and Nagahama, Y (1992). Purification and characterization of maturation-promoting factor in fish. Dev. Biol 149, 8-15.[Medline]

Zecevic, M., Catling, A. D., Eblen, S. T., Renzi, L., Hittle, J. C., Yen, T. J., Gorbsky, G. J. and Weber, M. J (1998). Active MAP kinase in mitosis: localization at kinetochores and association with the motor protein CENP-E. J. Cell Biol 142, 1547-1558.[Abstract/Free Full Text]




This article has been cited by other articles:


Home page
Mol Hum ReprodHome page
J. E. Swain, J. Ding, J. Wu, and G. D. Smith
Regulation of spindle and chromatin dynamics during early and late stages of oocyte maturation by aurora kinases
Mol. Hum. Reprod., May 1, 2008; 14(5): 291 - 299.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Gastrointest. Liver Physiol.Home page
G. Natarajan, S. Ramalingam, I. Ramachandran, R. May, L. Queimado, C. W. Houchen, and S. Anant
CUGBP2 downregulation by prostaglandin E2 protects colon cancer cells from radiation-induced mitotic catastrophe
Am J Physiol Gastrointest Liver Physiol, May 1, 2008; 294(5): G1235 - G1244.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Gastrointest. Liver Physiol.Home page
S. Ramalingam, G. Natarajan, C. Schafer, D. Subramaniam, R. May, I. Ramachandran, L. Queimado, C. W. Houchen, and S. Anant
Novel intestinal splice variants of RNA-binding protein CUGBP2: isoform-specific effects on mitotic catastrophe
Am J Physiol Gastrointest Liver Physiol, April 1, 2008; 294(4): G971 - G981.
[Abstract] [Full Text] [PDF]


Home page
EndocrinologyHome page
S. Cecconi, A. Mauro, G. Capacchietti, P. Berardinelli, N. Bernabo, A. R. Di Vincenzo, M. Mattioli, and B. Barboni
Meiotic Maturation of Incompetent Prepubertal Sheep Oocytes Is Induced by Paracrine Factor(s) Released by Gonadotropin-Stimulated Oocyte-Cumulus Cell Complexes and Involves Mitogen-Activated Protein Kinase Activation
Endocrinology, January 1, 2008; 149(1): 100 - 107.
[Abstract] [Full Text] [PDF]


Home page
Mol. Endocrinol.Home page
C.-G. Liang, Y.-Q. Su, H.-Y. Fan, H. Schatten, and Q.-Y. Sun
Mechanisms Regulating Oocyte Meiotic Resumption: Roles of Mitogen-Activated Protein Kinase
Mol. Endocrinol., September 1, 2007; 21(9): 2037 - 2055.
[Abstract] [Full Text] [PDF]


Home page
EndocrinologyHome page
K. Linher, D. Wu, and J. Li
Glial Cell Line-Derived Neurotrophic Factor: An Intraovarian Factor that Enhances Oocyte Developmental Competence in Vitro
Endocrinology, September 1, 2007; 148(9): 4292 - 4301.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
W. L. Zhang, P. Huitorel, A.-M. Geneviere, S. Chiri, and B. Ciapa
Inactivation of MAPK in mature oocytes triggers progression into mitosis via a Ca2+-dependent pathway but without completion of S phase
J. Cell Sci., September 1, 2006; 119(17): 3491 - 3501.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
R. Philipova and M. Whitaker
Active ERK1 is dimerized in vivo: bisphosphodimers generate peak kinase activity and monophosphodimers maintain basal ERK1 activity
J. Cell Sci., December 15, 2005; 118(24): 5767 - 5776.
[Abstract] [Full Text] [PDF]


Home page
ScienceHome page
O. Brandman, J. E. Ferrell Jr., R. Li, and T. Meyer
Interlinked Fast and Slow Positive Feedback Loops Drive Reliable Cell Decisions
Science, October 21, 2005; 310(5747): 496 - 498.
[Abstract] [Full Text] [PDF]


Home page
ReproductionHome page
J. Ito, M. Hirabayashi, M. Kato, A. Takeuchi, M. Ito, M. Shimada, and S. Hochi
Contribution of high p34cdc2 kinase activity to premature chromosome condensation of injected somatic cell nuclei in rat oocytes
Reproduction, February 1, 2005; 129(2): 171 - 180.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
R. Philipova, J. Kisielewska, P. Lu, M. Larman, J.-Y. Huang, and M. Whitaker
ERK1 activation is required for S-phase onset and cell cycle progression after fertilization in sea urchin embryos
Development, February 1, 2005; 132(3): 579 - 589.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
M. Donnison and P. L. Pfeffer
Isolation of Genes Associated with Developmentally Competent Bovine Oocytes and Quantitation of Their Levels During Development
Biol Reprod, December 1, 2004; 71(6): 1813 - 1821.
[Abstract] [Full Text] [PDF]


Home page
EndocrinologyHome page
J. Craig, H. Zhu, P. W. Dyce, J. Petrik, and J. Li
Leptin Enhances Oocyte Nuclear and Cytoplasmic Maturation via the Mitogen-Activated Protein Kinase Pathway
Endocrinology, November 1, 2004; 145(11): 5355 - 5363.
[Abstract] [Full Text] [PDF]


Home page
ReproductionHome page
S. Di Agostino, F. Botti, A. Di Carlo, C. Sette, and R. Geremia
Meiotic progression of isolated mouse spermatocytes under simulated microgravity
Reproduction, July 1, 2004; 128(1): 25 - 32.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
H.-Y. Fan, L.-J. Huo, D.-Y. Chen, H. Schatten, and Q.-Y. Sun
Protein Kinase C and Mitogen-Activated Protein Kinase Cascade in Mouse Cumulus Cells: Cross Talk and Effect on Meiotic Resumption of Oocyte
Biol Reprod, April 1, 2004; 70(4): 1178 - 1187.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
H.-Y. Fan and Q.-Y. Sun
Involvement of Mitogen-Activated Protein Kinase Cascade During Oocyte Maturation and Fertilization in Mammals
Biol Reprod, March 1, 2004; 70(3): 535 - 547.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
H.-Y. Fan, L.-J. Huo, X.-Q. Meng, Z.-S. Zhong, Y. Hou, D.-Y. Chen, and Q.-Y. Sun
Involvement of Calcium/Calmodulin-Dependent Protein Kinase II (CaMKII) in Meiotic Maturation and Activation of Pig Oocytes
Biol Reprod, November 1, 2003; 69(5): 1552 - 1564.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. A. Stricker and T. L. Smythe
Endoplasmic reticulum reorganizations and Ca2+ signaling in maturing and fertilized oocytes of marine protostome worms: the roles of MAPKs and MPF
Development, July 1, 2003; 130(13): 2867 - 2879.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
D. C. Shakes, P. L. Sadler, J. M. Schumacher, M. Abdolrasulnia, and A. Golden
Developmental defects observed in hypomorphic anaphase-promoting complex mutants are linked to cell cycle abnormalities
Development, April 15, 2003; 130(8): 1605 - 1620.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
L. B.-Y. Josefsberg, D. Galiani, S. Lazar, O. Kaufman, R. Seger, and N. Dekel
Maturation-Promoting Factor Governs Mitogen-Activated Protein Kinase Activation and Interphase Suppression During Meiosis of Rat Oocytes
Biol Reprod, April 1, 2003; 68(4): 1282 - 1290.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
H.-Y. Fan, C. Tong, L. Lian, S.-W. Li, W.-X. Gao, Y. Cheng, D.-Y. Chen, H. Schatten, and Q.-Y. Sun
Characterization of Ribosomal S6 Protein Kinase p90rsk During Meiotic Maturation and Fertilization in Pig Oocytes: Mitogen-Activated Protein Kinase-Associated Activation and Localization
Biol Reprod, March 1, 2003; 68(3): 968 - 977.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
X. Yan, F. Li, Y. Liang, Y. Shen, X. Zhao, Q. Huang, and X. Zhu
Human Nudel and NudE as Regulators of Cytoplasmic Dynein in Poleward Protein Transport along the Mitotic Spindle
Mol. Cell. Biol., February 15, 2003; 23(4): 1239 - 1250.
[Abstract] [Full Text] [PDF]


Home page
Mol Cancer ResHome page
S. Walsh, S. S. Margolis, and S. Kornbluth
Phosphorylation of the Cyclin B1 Cytoplasmic Retention Sequence by Mitogen-Activated Protein Kinase and Plx
Mol. Cancer Res., February 1, 2003; 1(4): 280 - 289.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
S. Ohashi, K. Naito, K. Sugiura, N. Iwamori, S. Goto, H. Naruoka, and H. Tojo
Analyses of Mitogen-Activated Protein Kinase Function in the Maturation of Porcine Oocytes
Biol Reprod, February 1, 2003; 68(2): 604 - 609.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
C. Robert, I. Hue, S. McGraw, D. Gagne, and M.-A. Sirard
Quantification of Cyclin B1 and p34cdc2 in Bovine Cumulus-Oocyte Complexes and Expression Mapping of Genes Involved in the Cell Cycle by Complementary DNA Macroarrays
Biol Reprod, November 1, 2002; 67(5): 1456 - 1464.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
A. Schmitt and A. R. Nebreda
Signalling pathways in oocyte meiotic maturation
J. Cell Sci., June 15, 2002; 115(12): 2457 - 2459.
[Full Text] [PDF]


Home page
J. Cell Biol.Home page
C. Lefebvre, M. E. Terret, A. Djiane, P. Rassinier, B. Maro, and M.-H. Verlhac
Meiotic spindle stability depends on MAPK-interacting and spindle-stabilizing protein (MISS), a new MAPK substrate
J. Cell Biol., May 13, 2002; 157(4): 603 - 613.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
M. Peter, J.-C. Labbe, M. Doree, and E. Mandart
A new role for Mos in Xenopus oocyte maturation: targeting Myt1 independently of MAPK
Development, January 5, 2002; 129(9): 2129 - 2139.
[Abstract] [Full Text] [PDF]


Home page
Sci SignalHome page
C. Preisinger and F. A. Barr
Signaling Pathways Regulating Golgi Structure and Function
Sci. Signal., October 30, 2001; 2001(106): pe38 - pe38.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
A. Castro, M. Peter, L. Magnaghi-Jaulin, S. Vigneron, S. Galas, T. Lorca, and J.-C. Labbe
Cyclin B/cdc2 Induces c-Mos Stability by Direct Phosphorylation in Xenopus Oocytes
Mol. Biol. Cell, September 1, 2001; 12(9): 2660 - 2671.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
C. P. Bagowski, J. W. Myers, and J. E. Ferrell Jr.
The Classical Progesterone Receptor Associates with p42 MAPK and Is Involved in Phosphatidylinositol 3-Kinase Signaling in Xenopus Oocytes
J. Biol. Chem., September 28, 2001; 276(40): 37708 - 37714.
[Abstract] [Full Text] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Abrieu, A.
Right arrow Articles by Fisher, D.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Abrieu, A.
Right arrow Articles by Fisher, D.