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 Li, J.
Right arrow Articles by Walker, J. C.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Li, J.
Right arrow Articles by Walker, J. C.
Social Bookmarking
 Add to CiteULike   Add to Complore   Add to Connotea   Add to Del.icio.us   Add to Digg   Add to Reddit   Add to Technorati   Add to Twitter  
What's this?
Andrews, R. K., Harris, S. J., McNally, T. and Berndt, M. C (1998). Binding of purified 14-3-3 zeta signaling protein to discrete amino acid sequences within the cytoplasmic domain of the platelet membrane glycoprotein Ib-IX-V complex. Biochemistry 37, 638-647.[Medline]

Bell, D. W., Varley, J. M., Szydlo, T. E., Kang, D. H., Wahrer, D. C. R., Shannon K. E. Lubratovich, M., Verselis S. J., Isselbacher K. J., Fraumeni, J. F., Birch, J. M. et al (1999). Heterozygous germ line hCHK2 mutations in Li-Fraumeni syndrome. Science 286, 2528-2531.[Abstract/Free Full Text]

Boleti, H., Karsenti, E. and Vernos, I (1996). Xklp2, a novel Xenopus centrosomal kinesin-like protein required for centrosome separation during mitosis. Cell 84, 49-59.[Medline]

Bork, P., Hofmann, K., Bucher, P., Neuwald, A. F., Altschul, S. F. and Koonin, E. V (1997). A superfamily of conserved domains in DNA damage-responsive cell cycle checkpoint proteins. FASEB J 11, 68-76.[Abstract]

Boudrez, A., Beullens, M., Groenen, P., Van Eynde, A., Vulsteke, V., Jagiello, I., Murray, M., Krainer, A. R., Stalmans, W. and Bollen M (2000). NIPP1-mediated interaction of protein phosphatase-1 with CDC5L, a regulator of pre-mRNA splicing and mitotic entry. J. Biol. Chem 275, 25411-25417.[Abstract/Free Full Text]

Brand, U., Fletcher, J. C., Hobe, M., Meyerowitz, E. M. and Simon R (2000). Dependence of stem cell fate in Arabidopsis on a feedback loop regulated by CLV3 activity. Science 289, 617-619.[Abstract/Free Full Text]

Braun, D. M., Stone, J. M. and Walker, J. C (1997). Interaction of the maize and Arabidopsis kinase interaction domains with a subset of receptor-like protein kinases: implications for transmembrane signaling in plants. Plant J 12, 83-95.[Medline]

Cantley, L. C., Auger, K. R., Carpenter, C., Duckworth, B., Graziani, A., Kapeller, R. and Soltoff, S (1991). Oncogenes and signal transduction. Cell 64, 281-302.[Medline]

Chrivia, J. C., Kwok, R. P. S., Lamb, N., Hagiwara, M., Montminy, M. R. and Goodman, R. H (1993). Phosphorylated CREB binds specifically to the nuclear protein CBP. Nature 365, 855-859.[Medline]

Chung, C. Y., Reddy, T. B., Zhou, K. and Firtel, R. A (1998). A novel, putative MEK kinase controls developmental timing and spatial patterning in Dictyostelium and is regulated by ubiquitin-mediated protein degradation. Genes Dev 12, 3564-3578.[Abstract/Free Full Text]

Claverie-Martin, F., Wang, M. and Cohen, S. N (1997). ARD-1 cDNA from human cells encodes a site-specific single-strand endoribonuclease that functionally resembles Escherichia coli RNase E. J. Biol. Chem 272, 13823-13828.[Abstract/Free Full Text]

Cohen, G. B., Ren, R. and Baltimore D (1995). Modular binding domains in signal transduction proteins. Cell 80, 237-248.[Medline]

Durocher, D., Henckel, J., Fersht, A. R. and Jackson, S. P (1999). The FHA domain is a modular phosphopeptide recognition motif. Mol. Cell 4, 387-394.

Fay, D. S., Sun, Z. and Stern, D. F (1997). Mutations in SPK1/RAD53 that specifically abolish checkpoint but not growth-related functions. Curr. Genet 31, 97-105.[Medline]

Fletcher, J. C., Brand, U., Running, M. P., Simon, R. and Meyerowitz, E. M (1999). Signaling of cell fate decisions by CLAVATA3 in Arabidopsis shoot meristems. Science 283, 1911-1914.[Abstract/Free Full Text]

Gerdes, J., Lemke, H., Baisch, H., Wacker, H.-H., Schwab, U. and Stein, H. ( (1984). Cell cycle analysis of a cell proliferation-associated human nuclear antigen defined by the monoclonal antibody Ki-67. J. Immunol 133, 1710-1715.[Abstract]

Hammet, A., Pike, B. L., Mitchelhill, K. I., Teh, T., Kobe, B., House, C. M., Kemp, B. E. and Heierhorst, J (2000). FHA domain boundaries of the Dun1p and RAD53p cell cycle checkpoint kinases. FEBS Lett 471, 141-146.[Medline]

Hofmann, K. and Bucher, P (1995). The FHA domain: a putative nuclear signalling domain found in protein kinases and transcription factors. Trends Biochem. Sci 20, 347-349.[Medline]

Jeong, S., Trotochaud, A. E. and Clark, S. E (1999). The Arabidopsis CLAVATA2 gene encodes a receptor-like protein required for the stability of the CLAVATA1 receptor-like kinase. Plant Cell 11, 1925-1934.[Abstract/Free Full Text]

Jinn, T.-L., Stone, J. M. and Walker, J. C (2000). HAESA, an Arabidopsis leucine-rich repeat receptor kinase, controls floral organ abscission. Genes Dev 14, 108-117.[Abstract/Free Full Text]

Kavanaugh, W. M., Turck, C. W. and Williams, L. T (1995). PTB domain binding to signaling proteins through a sequence motif containing phosphotyrosine. Science 268, 1177-1179.[Abstract/Free Full Text]

Koch, C. A., Anderson, D., Moran, M. F., Ellis, C. and Pawson, T (1991). SH2 and SH3 domains: elements that control interactions of cytoplasmic signaling proteins. Science 252, 668-674.[Abstract/Free Full Text]

Koradi, R., Billeter, M. and Wuthrich, K (1996). MOLMOL: a program for display and analysis of macromolecular structures. J. Mol. Graphics 14, 51-55.[Medline]

Kwok, R. P., Lundblad, J. R., Chrivia, J. C., Richards, J. P., B\212chinger, H. P., Brennan, R. G., Roberts, S. G. E., Green, M. R. and Goodman, R. H (1994). Nuclear protein CBP is a coactivator for the transcription factor CREB. Nature 370, 223-226.[Medline]

Li, J. and Chory, J (1997). A putative leucine-rich repeator kinase involved in brassinosteroid signal transduction. Cell 90, 929-938.[Medline]

Li, J., Smith, G. P. and Walker, J. C (1999). Kinase interaction domain of kinase-associated protein phosphatase, a phosphoprotein-binding domain. Proc. Nat. Acad. Sci. USA 96, 7821-7826.[Abstract/Free Full Text]

Liao, H, Byeon, I. J and Tsai, M. D (1999). Structure and function of a new phosphopeptide-binding domain containing the FHA2 of Rad53. J. Mol. Biol 294, 1041-1049.[Medline]

Lu, P. J., Zhou, X. Z., Shen, M. and Lu, K. P (1999). Function of WW domains as phosphoserine-or phosphothreonine-binding modules. Science 283, 1325-1328.[Abstract/Free Full Text]

Marengere, L. E. M., Songyang, Z., Gish, G. D., Schaller, M. D., Parsons,J. T., Stern, M. J., Cantley, L. C. and Pawson, T (1994). SH2 domain specificity and activity modified by a single residue. Nature 369, 502-505.[Medline]

Matsuoka, S., Huang, M. and Elledge, S. J (1998). Linkage of ATM to cell cycle regulation by the Chk2 protein kinase. Science 282, 1893-1897.[Abstract/Free Full Text]

Murakami, H. and Okayama, H (1995). A kinase from fission yeast responsible for blocking mitosis in S phase. Nature 374, 817-819.[Medline]

Muslin, A. J., Tanner, J. W., Allen, P. M. and Shaw, A. S (1996). Interaction of 14-3-3 with signaling proteins is mediated by the recognition of phosphoserine. Cell 84, 889-897.[Medline]

Oishi, I., Sugiyama, S., Otani, H., Yamamura, H., Nishida, Y. and Minami, Y (1998). A novel Drosophila nuclear protein serine/threonine kinase expressed in the germline during its establishment. Mech Dev 71, 49-63.[Medline]

Parker, D., Ferreri, K., Nakajima, T., Lamorte, V. J., Evans, R., Koerber, S. C., Hoeger, C. and Montminy, M. R (1996). Phosphorylation of CREB at Ser-133 induces complex formation with CREB-binding protein via a direct mechanism. Mol. Cell. Biol 16, 694-703.[Abstract]

Radhakrishnan, I, Perez-Alvarado, G. C., Parker, D., Dyson, H. J., Montminy, M. R. and Wright, P. E (1997). Solution structure of the KIX domain of CBP bound to the transactivation domain of CREB: a model for activator:coactivator interactions. Cell 91, 741-752.[Medline]

Saka, Y., Esashi, F., Matsusaka, T., Mochida, S. and Yanagida, M (1997). Damage and replication checkpoint control in fission yeast is ensured by interactions of Crb2, a protein with BRCT motif, with Cut5 and Chk1. Genes Dev 11, 3387-400.[Abstract/Free Full Text]

Sanchez, Y., Desany, B. A., Jones, W. J., Liu, Q., Wang, B. and Elledge, S. J (1996). Regulation of RAD53 by the ATM-like kinases MEC1 and TEL1 in yeast cell cycle checkpoint pathways. Science 271, 357-360.[Abstract]

Schultz, J., Copley, R. R., Doerks, T., Ponting, C. P. and Bork, P (2000). SMART: a web-based tool for the study of genetically mobile domains. Nucl. Acids Res 28, 231-234.[Abstract/Free Full Text]

Song, W., Wang, G., Chen, L., Kim, H., Pi, L., Holsten, T., gardner, J., Wang, B., Zhai, W., Zhu, L. et al. ( (1995). A receptor kinase-like protein encoded by the rice resistance gene, Xa21. Science 270, 1804-1806.[Abstract/Free Full Text]

Songyang, Z., Shoelson, S. E., Chaudhuri, M., Gish, G., Pawson, T., Haser, W. G., King, F., Roberts, T., Ratnofsky, S., Lechleider, R. J., Neel, B. G. et al. ( (1993). SH2 domains recognize specific phosphopeptide sequences. Cell 72, 767-778.[Medline]

Stone, J. M., Collinge, M. A., Smith, R. D., Horn, M. A. and Walker, J. C (1994). Interaction of a protein phosphatase with an Arabidopsis serine-threonine receptor kinase. Science 266, 793-796.[Abstract/Free Full Text]

Stone, J. M., Trotochaud, A. E., Walker, J. C. and Clark, S. E (1998). Control of meristem development by CLAVATA1 receptor kinase and KAPP protein phosphatase interaction. Plant Physiol 117, 1217-1225.[Abstract/Free Full Text]

Sueishi, M., Takagi, M. and Yoneda, Y (2000). The forkhead-associated domain of Ki-67 antigen interacts with the novel kinesin-like protein Hklp2. J. Biol. Chem 275, 28888-28892.[Abstract/Free Full Text]

Sun, Z., Fay, D. S., Marini, F., Foiani, M. and Stern, D. F (1996). Spk1/Rad53 is regulated by Mec1-dependent protein phosphorylation in DNA replication and damage checkpoint pathways. Genes Dev 10, 395-406.[Abstract/Free Full Text]

Sun, Z., Hsiao, J., Fay, D. S. and Stern, D. F (1998). RAD53 FHA domain associated with phosphorylated Rad9 in the DNA damage checkpoint. Science 281, 272-274.[Abstract/Free Full Text]

Torii, K. U., Mitsukawa, N., Oosum, T., Matsuura, Y., Yokoyama, R., Whittier, R. F. and Komeda, Y (1996). The Arabidopsis ERECTA gene encodes a putative receptor protein kinase with extracellular leucine-rich repeats. Plant Cell 8, 735-746.[Abstract]

Trinkle-Mulcahy, L., Ajuh, P., Prescott, A., Claverie-Martin, F., Cohen, S., Lamond, A. I. and Cohen, P (1999). Nuclear organisation of NIPP1, a regulatory subunit of protein phosphatase 1 that associates with pre-mRNA splicing factors. J. Cell Sci 112, 157-168.[Abstract]

Trotochaud, A. E., Hao, T., Wu, G., Yang, Z. and Clark, S. E (1999). The CLAVATA1 receptor-like kinase requires CLAVATA3 for its assembly into a signaling complex that includes KAPP and a Rho-related protein. Plant Cell 11, 393-406.[Abstract/Free Full Text]

Trotochaud, A. E., Jeong S. and Clark, S. E (2000). CLAVATA3, a mutimeric ligand for the CLAVATA1 receptor-kinase. Science 289, 613-616.[Abstract/Free Full Text]

van der Knaap, E., Song, W. Y., Ruan, D. L., Sauter, M., Ronald, P. C. and Kende, H (1999). Expression of a gibberellin-induced leucine-rich repeat receptor-like protein kinase in deepwater rice and its interaction with kinase-associated protein phosphatase. Plant Physiol 120, 559-570.[Abstract/Free Full Text]

Vulsteke, V., Beullens, M., Waelkens, E., Stalmans, W. and Bollen, M (1997). Properties and phosphorylation sites of baculovirus-expressed nuclear inhibitor of protein phosphatase-1 (NIPP-1). J. Biol. Chem 272, 32972-32978.[Abstract/Free Full Text]

Waksman, G., Kominos, D., Robertson, S. C., Pant, N., Baltimore, D., Birge, R. B., Cowburn, D., Hanafusa, H., Mayer, B. J., Overduin, M., Resh, M. D. et al. ( (1992). Crystal structure of the phosphotyrosine recognition domain SH2 of v-src complexed with tyrosine-phosphorylated peptides. Nature 358, 646-653.[Medline]

Walworth, N. C (1998). Rad9 comes of age. Science 281, 185-186.[Free Full Text]

Wang, P., Byeon, I.-J. L., Liao, H., Beebe, K., Pei, D. and Tsai, M.-D (2000). Structure and specificity of the interaction between the FHA2 domain of Rad53 and phosphotyrosine-peptides. J. Mol. Biol 302, 927-940.[Medline]

Williams, R. W., Wilson, J. M. and Meyerowitz, E. M (1997). A possible role for kinase associated protein phosphatase in the CLAVATA1 signaling pathway. Proc. Nat. Acad. Sci. USA 94, 10467-10472.[Abstract/Free Full Text]

Wilson, J., Wilson, S., Warr, N. and Watts, F. Z (1997). Isolation and characterization of the Schizosaccharomyces pombe rhp9 gene: a gene required for the DNA damage checkpoint but not the replication checkpoint. Nucl. Acids Res 25, 2138-2146.[Abstract/Free Full Text]

Yaffe, M. B., Rittinger, K., Volinia, S., Caron, P. R., Aitken, A., Leffers, H., Gamblin, S. J. and Cantley, L. C (1997). The structural basis for 14-3-3:phosphopeptide binding specificity. Cell 91, 961-971.[Medline]

Yaffe, M. B. and Cantley L. C (1999). Grabbing phosphoproteins. Nature 402, 30-31.[Medline]

Zhou, Z. and Elledge, S. J (1993). DUN1 encodes a protein kinase that controls the DNA damage response in yeast. Cell 75, 1119-1127.[Medline]


Add to CiteULike CiteULike   Add to Complore Complore   Add to Connotea Connotea   Add to Del.icio.us Del.icio.us   Add to Digg Digg   Add to Reddit Reddit   Add to Technorati Technorati   Add to Twitter Twitter    What's this?


This article has been cited by other articles:


Home page
J BiochemHome page
T. Matsumura, J. Kawamura-Tsuzuku, T. Yamamoto, K. Semba, and J.-i. Inoue
TRAF-Interacting Protein with a Forkhead-Associated Domain B (TIFAB) Is a Negative Regulator of the TRAF6-Induced Cellular Functions
J. Biochem., September 1, 2009; 146(3): 375 - 381.
[Abstract] [Full Text] [PDF]


Home page
Nucleic Acids ResHome page
A. A. E. Ali, R. M. Jukes, L. H. Pearl, and A. W. Oliver
Specific recognition of a multiply phosphorylated motif in the DNA repair scaffold XRCC1 by the FHA domain of human PNK
Nucleic Acids Res., April 1, 2009; 37(5): 1701 - 1712.
[Abstract] [Full Text] [PDF]


Home page
Sci SignalHome page
A. Mahajan, C. Yuan, H. Lee, E. S.-W. Chen, P.-Y. Wu, and M.-D. Tsai
Structure and Function of the Phosphothreonine-Specific FHA Domain
Sci. Signal., December 23, 2008; 1(51): re12 - re12.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
A. Miyahara, T. A. Hirani, M. Oakes, A. Kereszt, B. Kobe, M. A. Djordjevic, and P. M. Gresshoff
Soybean Nodule Autoregulation Receptor Kinase Phosphorylates Two Kinase-associated Protein Phosphatases in Vitro
J. Biol. Chem., September 12, 2008; 283(37): 25381 - 25391.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
B. Yu, L. Bi, B. Zheng, L. Ji, D. Chevalier, M. Agarwal, V. Ramachandran, W. Li, T. Lagrange, J. C. Walker, et al.
The FHA domain proteins DAWDLE in Arabidopsis and SNIP1 in humans act in small RNA biogenesis
PNAS, July 22, 2008; 105(29): 10073 - 10078.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
G. Guillemain, E. Ma, S. Mauger, S. Miron, R. Thai, R. Guerois, F. Ochsenbein, and M.-C. Marsolier-Kergoat
Mechanisms of Checkpoint Kinase Rad53 Inactivation after a Double-Strand Break in Saccharomyces cerevisiae
Mol. Cell. Biol., May 1, 2007; 27(9): 3378 - 3389.
[Abstract] [Full Text] [PDF]


Home page
Plant Physiol.Home page
E. R. Morris, D. Chevalier, and J. C. Walker
DAWDLE, a Forkhead-Associated Domain Gene, Regulates Multiple Aspects of Plant Development
Plant Physiology, July 1, 2006; 141(3): 932 - 941.
[Abstract] [Full Text] [PDF]


Home page
JCBHome page
U. Gruneberg, R. Neef, X. Li, E. H.Y. Chan, R. B. Chalamalasetty, E. A. Nigg, and F. A. Barr
KIF14 and citron kinase act together to promote efficient cytokinesis
J. Cell Biol., January 30, 2006; 172(3): 363 - 372.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
G. Guarguaglini, P. I. Duncan, Y. D. Stierhof, T. Holmstrom, S. Duensing, and E. A. Nigg
The Forkhead-associated Domain Protein Cep170 Interacts with Polo-like Kinase 1 and Serves as a Marker for Mature Centrioles
Mol. Biol. Cell, March 1, 2005; 16(3): 1095 - 1107.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
L. Jelsbak, M. Givskov, and D. Kaiser
Enhancer-binding proteins with a forkhead-associated domain and the {sigma}54 regulon in Myxococcus xanthus fruiting body development
PNAS, February 22, 2005; 102(8): 3010 - 3015.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
C.-K. Ea, L. Sun, J.-I. Inoue, and Z. J. Chen
TIFA activates I{kappa}B kinase (IKK) by promoting oligomerization and ubiquitination of TRAF6
PNAS, October 26, 2004; 101(43): 15318 - 15323.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
P. Bieganowski, K. Shilinski, P. N. Tsichlis, and C. Brenner
Cdc123 and Checkpoint Forkhead Associated with RING Proteins Control the Cell Cycle by Controlling eIF2{gamma} Abundance
J. Biol. Chem., October 22, 2004; 279(43): 44656 - 44666.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
Y. Takano, S. Adachi, M. Okuno, Y. Muto, T. Yoshioka, R. Matsushima-Nishiwaki, H. Tsurumi, K. Ito, S. L. Friedman, H. Moriwaki, et al.
The RING Finger Protein, RNF8, Interacts with Retinoid X Receptor {alpha} and Enhances Its Transcription-stimulating Activity
J. Biol. Chem., April 30, 2004; 279(18): 18926 - 18934.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
B. L. Pike, S. Yongkiettrakul, M.-D. Tsai, and J. Heierhorst
Mdt1, a Novel Rad53 FHA1 Domain-Interacting Protein, Modulates DNA Damage Tolerance and G2/M Cell Cycle Progression in Saccharomyces cerevisiae
Mol. Cell. Biol., April 1, 2004; 24(7): 2779 - 2788.
[Abstract] [Full Text] [PDF]


Home page
J. Histochem. Cytochem.Home page
T. Cheutin, M.-F. O'Donohue, A. Beorchia, C. Klein, H. Kaplan, and D. Ploton
Three-dimensional Organization of pKi-67: A Comparative Fluorescence and Electron Tomography Study Using Fluoronanogold
J. Histochem. Cytochem., November 1, 2003; 51(11): 1411 - 1423.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
D. Reynolds, B. J. Shi, C. McLean, F. Katsis, B. Kemp, and S. Dalton
Recruitment of Thr 319-phosphorylated Ndd1p to the FHA domain of Fkh2p requires Clbkinase activity: a mechanism for CLB cluster gene activation
Genes & Dev., July 15, 2003; 17(14): 1789 - 1802.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
M. Toyota, Y. Sasaki, A. Satoh, K. Ogi, T. Kikuchi, H. Suzuki, H. Mita, N. Tanaka, F. Itoh, J.-P. J. Issa, et al.
Epigenetic inactivation of CHFR in human tumors
PNAS, June 24, 2003; 100(13): 7818 - 7823.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
H. Takatsuna, H. Kato, J. Gohda, T. Akiyama, A. Moriya, Y. Okamoto, Y. Yamagata, M. Otsuka, K. Umezawa, K. Semba, et al.
Identification of TIFA as an Adapter Protein That Links Tumor Necrosis Factor Receptor-associated Factor 6 (TRAF6) to Interleukin-1 (IL-1) Receptor-associated Kinase-1 (IRAK-1) in IL-1 Receptor Signaling
J. Biol. Chem., March 28, 2003; 278(14): 12144 - 12150.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
H. A. Kemp and G. F. Sprague Jr.
Far3 and Five Interacting Proteins Prevent Premature Recovery from Pheromone Arrest in the Budding Yeast Saccharomyces cerevisiae
Mol. Cell. Biol., March 1, 2003; 23(5): 1750 - 1763.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
V. I. Bashkirov, E. V. Bashkirova, E. Haghnazari, and W.-D. Heyer
Direct Kinase-to-Kinase Signaling Mediated by the FHA Phosphoprotein Recognition Domain of the Dun1 DNA Damage Checkpoint Kinase
Mol. Cell. Biol., February 15, 2003; 23(4): 1441 - 1452.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. Kim, J.-W. Ahn, K. Song, K.-H. Paek, and H.-S. Pai
Forkhead-associated Domains of the Tobacco NtFHA1 Transcription Activator and the Yeast Fhl1 Forkhead Transcription Factor Are Functionally Conserved
J. Biol. Chem., October 4, 2002; 277(41): 38781 - 38790.
[Abstract] [Full Text] [PDF]


Home page
Eukaryot CellHome page
E. S. Bensen, S. G. Filler, and J. Berman
A Forkhead Transcription Factor Is Important for True Hyphal as well as Yeast Morphogenesis in Candida albicans
Eukaryot. Cell, October 1, 2002; 1(5): 787 - 798.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
A. Boudrez, M. Beullens, E. Waelkens, W. Stalmans, and M. Bollen
Phosphorylation-dependent Interaction between the Splicing Factors SAP155 and NIPP1
J. Biol. Chem., August 23, 2002; 277(35): 31834 - 31841.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
X. Xu, L. M. Tsvetkov, and D. F. Stern
Chk2 Activation and Phosphorylation-Dependent Oligomerization
Mol. Cell. Biol., June 15, 2002; 22(12): 4419 - 4432.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
A. Hammet, B. L. Pike, and J. Heierhorst
Posttranscriptional Regulation of the RAD5 DNA Repair Gene by the Dun1 Kinase and the Pan2-Pan3 Poly(A)-Nuclease Complex Contributes to Survival of Replication Blocks
J. Biol. Chem., June 14, 2002; 277(25): 22469 - 22474.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
A. Moustakas, S. Souchelnytskyi, and C.-H. Heldin
Smad regulation in TGF-{beta} signal transduction
J. Cell Sci., March 14, 2002; 114(24): 4359 - 4369.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
P. T. W. Cohen
Protein phosphatase 1 - targeted in many directions
J. Cell Sci., January 15, 2002; 115(2): 241 - 256.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
L. Gómez-Gómez, Z. Bauer, and T. Boller
Both the Extracellular Leucine-Rich Repeat Domain and the Kinase Activity of FLS2 Are Required for Flagellin Binding and Signaling in Arabidopsis
PLANT CELL, May 1, 2001; 13(5): 1155 - 1163.
[Abstract] [Full Text]


Home page
J. Biol. Chem.Home page
M. Takagi, M. Sueishi, T. Saiwaki, A. Kametaka, and Y. Yoneda
A Novel Nucleolar Protein, NIFK, Interacts with the Forkhead Associated Domain of Ki-67 Antigen in Mitosis
J. Biol. Chem., June 29, 2001; 276(27): 25386 - 25391.
[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 Li, J.
Right arrow Articles by Walker, J. C.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Li, J.
Right arrow Articles by Walker, J. C.
Social Bookmarking
 Add to CiteULike   Add to Complore   Add to Connotea   Add to Del.icio.us   Add to Digg   Add to Reddit   Add to Technorati   Add to Twitter  
What's this?