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Aladjem, M. I., Groudine, M., Brody, L. L., Dieken, E. S., Fournier, R. E., Wahl, G. M. and Epner, E. M (1995). Participation of the human beta-globin locus control region in initiation of DNA replication. Science 270, 815-819.[Abstract/Free Full Text]

Bielinsky, A. K. and Gerbi, S. A (1999). Chromosomal ARS1 has a single leading strand start site. Mol. Cell 3, 477-486.

Blow, J. J (1993). Preventing re-replication of DNA in a single cell cycle: evidence for a replication licensing factor. J. Cell Biol 122, 993-1002.[Abstract/Free Full Text]

Braguglia, D., Heun, P., Pasero, P., Duncker, B. P. and Gasser, S. M (1998). Semi-conservative replication in yeast nuclear extracts requires Dna2 helicase and supercoiled template. J. Mol. Biol 281, 631-649.[Medline]

Bullock, P. A., Seo, Y. S. and Hurwitz, J (1991). Initiation of simian virus 40 DNA synthesis in vitro. Mol. Cell Biol 11, 2350-2361.[Abstract/Free Full Text]

Burhans, W. C., Vassilev, L. T., Wu, J., Sogo, J. M., Nallaseth, F. S. and DePamphilis, M. L (1991). Emetine allows identification of origins of mammalian DNA replication by imbalanced DNA synthesis, not through conservative nucleosome segregation. EMBOJ 10, 4351-4360.[Medline]

Carpenter, P. B., Mueller, P. R. and Dunphy, W. G (1996). Role for a Xenopus Orc2-related protein in controlling DNA replication. Nature 379, 357-360.[Medline]

Chong, J. P., Thommes, P., Rowles, A., Mahbubani, H. M. and Blow, J. J (1997). Characterization of the Xenopus replication licensing system. Meth. Enzymol 283, 549-564.[Medline]

Coleman, T. R., Carpenter, P. B. and Dunphy, W. G (1996). The Xenopus Cdc6 protein is essential for the initiation of a single round of DNA replication in cell-free extracts. Cell 87, 53-63.[Medline]

Decker, R. S., Yamaguchi, M., Possenti, R. and DePamphilis, M. L (1986). Initiation of simian virus 40 DNA replication in vitro: aphidicolin causes accumulation of early-replicating intermediates and allows determination of the initial direction of DNA synthesis. Mol. Cell Biol 6, 3815-3825.[Abstract/Free Full Text]

DePamphilis, M. L (1993). Eukaryotic DNA replication: anatomy of an origin. Annu. Rev. Biochem 62, 29-63.[Medline]

DePamphilis, M. L (1993). Origins of DNA replication in metazoan chromosomes. J. Biol.Chem 268, 1-4.[Abstract/Free Full Text]

DePamphilis, M. L (1999). Replication origins in metazoan chromosomes: fact or fiction?. BioEssays 21, 5-16.[Medline]

Dijkwel, P. A. and Hamlin, J. L (1995). The Chinese hamster dihydrofolate reductase origin consists of multiple potential nascent-strand start sites. Mol. Cell Biol 15, 3023-3031.[Abstract]

Dimitrov, S. and Wolffe, A. P (1996). Remodeling somatic nuclei in Xenopus laevis egg extracts: molecular mechanisms for the selective release of histones H1 and H1(0) from chromatin and the acquisition of transcriptional competence. EMBOJ 15, 5897-5906.[Medline]

Dinter-Gottlieb, G. and Kaufmann, G (1983). Aphidicolin arrest irreversibly impairs replicating simian virus 40 chromosomes. J. Biol. Chem 258, 3809-3812.[Abstract/Free Full Text]

Droge, P., Sogo, J. M. and Stahl, H (1985). Inhibition of DNA synthesis by aphidicolin induces supercoiling in simian virus 40 replicative intermediates. EMBOJ 4, 3241-3246.[Medline]

Dubey, D. D., Zhu, J., Carlson, D. L., Sharma, K. and Huberman, J. A (1994). Three ARS elements contribute to the ura4 replication origin region in the fission yeast, Schizosaccharomyces pombe. EMBOJ 13, 3638-3647.[Medline]

Ermakova, O. V., Nguyen, L. H., Little, R. D., Chevillard, C., Riblet, R., Ashouian, N., Birshtein, B. K. and Schildkraut, C. L (1999). Evidence that a single replication fork proceeds from early to late replicating domains in the IgH locus in a non-B cell line. Mol. Cell 3, 321-330.

Giacca, G., Pelizon, C. and Falaschi, A (1997). Mapping replication origins by quantifying the relative abundance of nascent DNA strands using the competitive polymerase chain reaction. Methods 13, 301-312.[Medline]

Gilbert, D. M., Miyazawa, H., Nallaseth, F. S., Ortega, J. M., Blow, J. J. and DePamphilis, M. L (1993). Site-specific initiation of DNA replication in metazoan chromosomes and the role of nuclear organization. Cold Spring Harb. Symp. Quant. Biol 58, 475-485.[Medline]

Gilbert, D. M., Miyazawa, H. and DePamphilis, M. L (1995). Site-specific initiation of DNA replication in Xenopus egg extract requires nuclear structure. Mol. Cell Biol 15, 2942-2954.[Abstract]

Gilbert, D. M., Neilson, A., Miyazawa, H., DePamphilis, M. L. and Burhans, W. C (1995). Mimosine arrests DNA synthesis at replication forks by inhibiting deoxyribonucleotide metabolism. J. Biol.Chem 270, 9597-9606.[Abstract/Free Full Text]

Glover, T. W., Berger, C., Coyle, J. and Echo, B (1984). DNA polymerase alpha inhibition by aphidicolin induces gaps and breaks at common fragile sites in human chromosomes. Hum. Genet 67, 136-142.[Medline]

Hughes, T. A. and Cook, P. R (1996). Mimosine arrests the cell cycle after cells enter S-phase. Exp.Cell Res 222, 275-280.[Medline]

Hyrien, O., Maric, C. and Mechali, M (1995). Transition in specification of embryonic metazoan DNA replication origins. Science 270, 994-997.[Abstract/Free Full Text]

Kalejta, R. F. and Hamlin, J. L (1997). The dual effect of mimosine on DNA replication. Exp.Cell Res 231, 173-183.[Medline]

Kalejta, R. F., Lin, H. B., Dijkwel, P. A. and Hamlin, J. L (1996). Characterizing replication intermediates in the amplified CHO dihydrofolate reductase domain by two novel gel electrophoretic techniques. Mol. Cell Biol 16, 4923-4931.[Abstract]

Kitsberg, D., Selig, S., Keshet, I. and Cedar, H (1993). Replication structure of the human beta-globin gene domain. Nature 366, 588-590.[Medline]

Kobayashi, T., Rein, T. and DePamphilis, M. L (1998). Identification of primary initiation sites for DNA replication in the hamster dihydrofolate reductase gene initiation zone. Mol. Cell Biol 18, 3266-3277.[Abstract/Free Full Text]

Laughlin, T. J. and Taylor, J. H (1979). Initiation of DNA replication in chromosomes of Chinese hamster ovary cells. Chromosoma 75, 19-35.[Medline]

Lonn, U. and Lonn, S (1988). Extensive regions of single-stranded DNA in aphidicolin-treated melanoma cells. Biochemistry 27, 566-570.[Medline]

Martin, R. G. and Oppenheim, A (1977). Initiation points for DNA replication in nontransformed and simian virus 40-transformed Chinese hamster lung cells. Cell 11, 859-869.[Medline]

Mechali, M. and Harland, R. M (1982). DNA synthesis in a cell-free system from Xenopus eggs: priming and elongation on single-stranded DNA in vitro. Cell 30, 93-101.[Medline]

Nethanel, T. and Kaufmann, G (1990). Two DNA polymerases may be required for synthesis of the lagging DNA strand of simian virus 40. J. Virol 64, 5912-5918.[Abstract/Free Full Text]

Pelizon, C., Diviacco, S., Falaschi, A. and Giacca, M (1996). High-resolution mapping of the origin of DNA repication in the hamsterdihdrofolate reductase gene domain by competitive PCR. Mol. Cell Biol 16, 5358-5364.[Abstract]

Romanowski, P., Madine, M. A., Rowles, A., Blow, J. J. and Laskey, R. A (1996). The Xenopus origin recognition complex is essential for DNA replication and MCM binding to chromatin. Curr.Biol 6, 1416-1425.[Medline]

Rowles, A., Chong, J. P., Brown, L., Howell, M., Evan, G. I. and Blow, J. J (1996). Interaction between the origin recognition complex and the replication licensing system in Xenopus. Cell 87, 287-296.[Medline]

Sasaki, T., Sawado, T., Yamaguchi, M. and Shinomiya, T (1999). Specification of regions of DNA replication initiation during embryogenesis in the 65-kilobase DNApolalpha-dE2F locus of Drosophila melanogaster. Mol. Cell Biol 19, 547-555.[Abstract/Free Full Text]

Snapka, R. M., Shin, C. G., Permana, P. A. and Strayer, J (1991). Aphidicolin-induced topological and recombinational events in simian virus 40. Nucl. Acids Res 19, 5065-5072.[Abstract/Free Full Text]

Tugal, T., Zou-Yang, X. H., Gavin, K., Pappin, D., Canas, B., Kobayashi, R., Hunt, T. and Stillman, B (1998). The Orc4p and Orc5p subunits of the Xenopus and human origin recognition complex are related to Orc1p and Cdc6p. J. Biol. Chem 273, 32421-32429.[Abstract/Free Full Text]

Walter, J. and Newport, J. W (1997). Regulation of replicon size in Xenopus egg extracts. Science 275, 993-995.[Abstract/Free Full Text]

Wangh, L. J., DeGrace, D., Sanchez, J. A., Gold, A., Yeghiazarians, Y., Wiedemann, K. and Daniels, S (1995). Efficient reactivation of Xenopus erythrocyte nuclei in Xenopus egg extracts. J. Cell Sci 108, 2187-2196.[Abstract]

Wessel, R., Ramsperger, U., Stahl, H. and Knippers, R (1992). The interaction of SV40 large T antigen with unspecific double-stranded DNA: an electron microscopic study. Virology 189, 293-303.[Medline]

Windle, B., Draper, B. W., Yin, Y. X., O'Gorman, S. and Wahl, G. M (1991). A central role for chromosome breakage in gene amplification, deletion formation, and amplicon integration. Genes Dev 5, 160-174.[Abstract/Free Full Text]

Wu, J. R. and Gilbert, D. M (1996). A distinct G1step required to specify the Chinese hamster DHFR replication origin. Science 271, 1270-1272.[Abstract]

Wu, J. R. and Gilbert, D. M (1997). The replication origin decision point is a mitogen-independent, 2-aminopurine-sensitive, G1-phase event that precedes restriction point control. Mol. Cell Biol 17, 4312-4321.[Abstract]

Wu, J. R., Yu, G. and Gilbert, D. M (1997). Origin-specific initiation of mammalian nuclear DNA replication in a Xenopus cell-free system. Methods 13, 313-324.[Medline]

Wu, J. R., Keezer, S. M. and Gilbert, D. M (1998). Transformation abrogates an early G1-phase arrest point required for specification of the Chinese hamster DHFR replication origin. EMBOJ 17, 1810-1818.[Medline]




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