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Blank, T., Trendelenburg, M. and Kleinschmidt, J. A (1992). Reactivation of DNA replication in erythrocyte nuclei by Xenopus extract involves energy-dependent chromatin decondensation and changes in histone phosphorylation. Exp. Cell Res 202, 224-232.[Medline]

Brewer, B. J. and Fangman, W. L (1987). The localization of replication origins on ARS plasmids in S. cerevisiae. Cell 51, 463-471.[Medline]

Brown, P. C., Tisty, T. D. and Schimke, R. T (1983). Enhancement of methotrexate resistance and dihydrofolate reductase gene amplification by treatment of mouse 3T6 cells with hydroxy urea. Mol. Cell. Biol 3, 1097-1107.[Abstract/Free Full Text]

Brun, R. B (1978). Developmental capacities of Xenopus eggs, provided with erythrocyte or erythroblast nuclei from adults. Dev. Biol 65, 271-278.[Medline]

Coppock, D. L., Lue, R. A. and Wangh, L. J (1989). Replication of Xenopus erythrocyte nuclei in a homologous egg extract requires prior proteolytic treatment. Dev. Biol 131, 102-110.[Medline]

Dasso, M. and Newport, J. W (1990). Completion of DNA replication is monitored by a feedback system that controls the initiation of mitosis in vitro: studies in Xenopus. Cell 61, 811-823.[Medline]

Di Berardino, M. A. and Hoffner, N. J (1983). Gene reactivation in erythrocytes: Nuclear transplantation in oocytes and eggs of Rana. Science 219, 862-864.[Abstract/Free Full Text]

Di Berardino, M. A., Orr, N. H. and McKinnell, R. G (1986). Feeding tadpoles cloned from Rana erythrocyte nuclei. Proc. Nat. Acad. Sci. USA 83, 8231-8234.[Abstract/Free Full Text]

Di Berardino, M. A. and Orr, N. H (1992). Genomic potential of erythroid and leukocytic cells of Rana pipiens analyzed by nuclear transfer into diplotene and maturing oocytes. Differentiation 50, 1-13.[Medline]

Grigoryev, S. A. and Woodcock, C. L (1993). Stage-specific expression and localization of MENT, a nuclear protein associated with chromatin condensation in terminally differentiated avian erythroid cells. Exp. Cell Res 206, 335-343.[Medline]

Gurdon, J. B (1962). The developmental capacity of nuclei taken from intestinal epithelium cells of feeding tadpoles. J. Embryol. Exp. Morph 10, 622-640.[Medline]

Kraemer, R. J. and Coffey, D. S (1970). The interaction of natural and synthetic polyanions with mammalian nuclei: II. Nuclear swelling. Biochim. Biophys. Acta 224, 568-578.[Medline]

Leno, G. H. and Laskey, R. A (1991). The nuclear membrane determines the timing of DNA replication in Xenopus egg extracts. J. Cell Biol 112, 557-566.[Abstract/Free Full Text]

Murray, A. W. and Kirschner, M. W (1989). Cyclin synthesis drives the early embryonic cell cycle. Nature 339, 275-280.[Medline]

Oberhammer, F., Wilson, J. W., Dive, C., Morris, I. D., Hickman, J. A., Wakeling, A. E., Walker, P. R. and Sikorska, M (1993). Apoptotic death in epithelial cells: cleavage of DNA to 300 and/or 50 kb fragments prior to or in the absence of internucleosomal fragmentation. EMBO J 12, 3679-3684.[Medline]

Orr, N. H., Di Berardino, M. A. and McKinnell, R. G (1986). The genome of frog erythrocytes displays centuplicate replications. Proc. Nat. Acad. Sci. USA 83, 1369-1373.[Abstract/Free Full Text]

Sanchez, J. A., Marek, D. and Wangh, L. J (1992). The efficiency and timing of plasmid DNA replication in Xenopus eggs: correlations to the extent of prior chromatin assembly. J. Cell Sci 103, 907-918.[Abstract/Free Full Text]

Stick, R. and Hausen, P (1985). Changes in the nuclear lamina composition during early development of Xenopus laevis. Cell 41, 191-200.[Medline]

Wangh, L. J (1989). Injection of Xenopus eggs before activation, achieved by control of extracellular factors, improves plasmid DNA replication after activation. J. Cell Sci 93, 1-8.[Abstract/Free Full Text]




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