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Summary Expression Phenotypes Gene Literature (105) GO Terms (10) Nucleotides (247) Proteins (62) Interactants (618) Wiki
XB-GENEPAGE-945046

Papers associated with rpa1



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Identification of nuclear pre-replication centers poised for DNA synthesis in Xenopus egg extracts: immunolocalization study of replication protein A., Adachi Y, Laemmli UK., J Cell Biol. October 1, 1992; 119 (1): 1-15.


Distinct roles of cdk2 and cdc2 in RP-A phosphorylation during the cell cycle., Fang F, Newport JW., J Cell Sci. November 1, 1993; 106 ( Pt 3) 983-94.


Study of the cell cycle-dependent assembly of the DNA pre-replication centres in Xenopus egg extracts., Adachi Y, Laemmli UK., EMBO J. September 1, 1994; 13 (17): 4153-64.


An analysis of the regulation of DNA synthesis by cdk2, Cip1, and licensing factor., Yan H, Newport J., J Cell Biol. April 1, 1995; 129 (1): 1-15.


FFA-1, a protein that promotes the formation of replication centers within nuclei., Yan H, Newport J., Science. September 29, 1995; 269 (5232): 1883-5.


Nuclear proteins of quiescent Xenopus laevis cells inhibit DNA replication in intact and permeabilized nuclei., Fang J, Benbow RM., J Cell Biol. June 1, 1996; 133 (5): 955-69.


A functional analysis of p53 during early development of Xenopus laevis., Amariglio F, Tchang F, Prioleau MN, Soussi T, Cibert C, Méchali M., Oncogene. October 1, 1997; 15 (18): 2191-9.


[A large T-antigen of SV40 virus: involvement in replication of cellular DNA and interactions with nuclear proteins]., Vasetskiĭ ES, Meshali M., Ontogenez. January 1, 1998; 29 (3): 170-7.


Genetic analysis of yeast RPA1 reveals its multiple functions in DNA metabolism., Umezu K, Sugawara N, Chen C, Haber JE, Kolodner RD., Genetics. March 1, 1998; 148 (3): 989-1005.


Replication focus-forming activity 1 and the Werner syndrome gene product., Yan H, Chen CY, Kobayashi R, Newport J., Nat Genet. August 1, 1998; 19 (4): 375-8.


Dynamics of the genome during early Xenopus laevis development: karyomeres as independent units of replication., Lemaitre JM, Géraud G, Méchali M., J Cell Biol. September 7, 1998; 142 (5): 1159-66.              


Gene expression screening in Xenopus identifies molecular pathways, predicts gene function and provides a global view of embryonic patterning., Gawantka V, Pollet N, Delius H, Vingron M, Pfister R, Nitsch R, Blumenstock C, Niehrs C., Mech Dev. October 1, 1998; 77 (2): 95-141.                                                            


Extended X-ray absorption fine structure evidence for a single metal binding domain in Xenopus laevis nucleotide excision repair protein XPA., Buchko GW, Iakoucheva LM, Kennedy MA, Ackerman EJ, Hess NJ., Biochem Biophys Res Commun. January 8, 1999; 254 (1): 109-13.


Detection of proteins binding to short RNA.DNA hybrids or short antisense oligonucleotides in Xenopus laevis oocytes and human macrophage cell extracts by photoaffinity radiolabeling., Revers F, Cario M, Cao TL, Cazenave C., Antisense Nucleic Acid Drug Dev. August 1, 1999; 9 (4): 317-31.


Nuclear import of RPA in Xenopus egg extracts requires a novel protein XRIPalpha but not importin alpha., Jullien D, Görlich D, Laemmli UK, Adachi Y., EMBO J. August 2, 1999; 18 (15): 4348-58.


Expression of Pax-3 in the lateral neural plate is dependent on a Wnt-mediated signal from posterior nonaxial mesoderm., Bang AG, Papalopulu N, Goulding MD, Kintner C., Dev Biol. August 15, 1999; 212 (2): 366-80.          


Mcm2, but not RPA, is a component of the mammalian early G1-phase prereplication complex., Dimitrova DS, Todorov IT, Melendy T, Gilbert DM., J Cell Biol. August 23, 1999; 146 (4): 709-22.                    


Nuclear import of p53 during Xenopus laevis early development in relation to DNA replication and DNA repair., Tchang F, Méchali M., Exp Cell Res. August 25, 1999; 251 (1): 46-56.


A two-step mechanism generates the spacing pattern of the ciliated cells in the skin of Xenopus embryos., Deblandre GA, Wettstein DA, Koyano-Nakagawa N, Kintner C., Development. November 1, 1999; 126 (21): 4715-28.                  


T-antigen interactions with chromatin and p53 during the cell cycle in extracts from xenopus eggs., Vassetzky YS, Tchang F, Fanning E, Méchali M., J Cell Biochem. November 1, 1999; 75 (2): 288-99.


Binding activity of replication protein A to UV-damaged single-stranded DNA., Hashimoto T, Morioka H, Izuta S., Nucleic Acids Symp Ser. January 1, 2000; (44): 177-8.


Regulation of neurogenesis by interactions between HEN1 and neuronal LMO proteins., Bao J, Talmage DA, Role LW, Gautier J., Development. January 1, 2000; 127 (2): 425-35.                


Initiation of eukaryotic DNA replication: origin unwinding and sequential chromatin association of Cdc45, RPA, and DNA polymerase alpha., Walter J, Newport J., Mol Cell. April 1, 2000; 5 (4): 617-27.


Ultrastructural characterization of RPA-containing domains in nuclei assembled in Xenopus egg extracts., Eltsov M, Grandi P, Raska I., J Struct Biol. April 1, 2000; 129 (2-3): 211-7.


Binding activity of replication protein A to single-stranded DNA containing oxidized pyrimidine base., Kasama T, Ono A, Izuta S., Nucleic Acids Res Suppl. January 1, 2001; (1): 167-8.


Evidence for a replication function of FFA-1, the Xenopus orthologue of Werner syndrome protein., Chen CY, Graham J, Yan H., J Cell Biol. March 5, 2001; 152 (5): 985-96.                


DNA double-strand breaks induce formation of RP-A/Ku foci on in vitro reconstituted Xenopus sperm nuclei., Grandi P, Eltsov M, Nielsen I, Raska I., J Cell Sci. September 1, 2001; 114 (Pt 18): 3345-57.


Equilibrium and stop-flow kinetic studies of fluorescently labeled DNA substrates with DNA repair proteins XPA and replication protein A., Iakoucheva LM, Walker RK, van Houten B, Ackerman EJ., Biochemistry. January 8, 2002; 41 (1): 131-43.


Molecular cloning, expression and partial characterization of Xksy, Xenopus member of the Sky family of receptor tyrosine kinases., Kishi YA, Funakoshi H, Matsumoto K, Nakamura T., Gene. April 17, 2002; 288 (1-2): 29-40.              


Xic1 degradation in Xenopus egg extracts is coupled to initiation of DNA replication., You Z, Harvey K, Kong L, Newport J., Genes Dev. May 15, 2002; 16 (10): 1182-94.


A requirement for replication in activation of the ATR-dependent DNA damage checkpoint., Lupardus PJ, Byun T, Yee MC, Hekmat-Nejad M, Cimprich KA., Genes Dev. September 15, 2002; 16 (18): 2327-32.


Protein phosphatase 2A regulates binding of Cdc45 to the prereplication complex., Chou DM, Petersen P, Walter JC, Walter G., J Biol Chem. October 25, 2002; 277 (43): 40520-7.


The Xenopus Xmus101 protein is required for the recruitment of Cdc45 to origins of DNA replication., Van Hatten RA, Tutter AV, Holway AH, Khederian AM, Walter JC, Michael WM., J Cell Biol. November 25, 2002; 159 (4): 541-7.          


Exposure to the herbicide acetochlor alters thyroid hormone-dependent gene expression and metamorphosis in Xenopus Laevis., Crump D, Werry K, Veldhoen N, Van Aggelen G, Helbing CC., Environ Health Perspect. December 1, 2002; 110 (12): 1199-205.


An ATR- and Cdc7-dependent DNA damage checkpoint that inhibits initiation of DNA replication., Costanzo V, Shechter D, Lupardus PJ, Cimprich KA, Gottesman M, Gautier J., Mol Cell. January 1, 2003; 11 (1): 203-13.


Claspin, a Chk1-regulatory protein, monitors DNA replication on chromatin independently of RPA, ATR, and Rad17., Lee J, Lee J, Kumagai A, Dunphy WG., Mol Cell. February 1, 2003; 11 (2): 329-40.


Cut5 is required for the binding of Atr and DNA polymerase alpha to genotoxin-damaged chromatin., Parrilla-Castellar ER, Karnitz LM., J Biol Chem. November 14, 2003; 278 (46): 45507-11.


Regulation of DNA replication by ATR: signaling in response to DNA intermediates., Shechter D, Costanzo V, Gautier J., DNA Repair (Amst). January 1, 2004; 3 (8-9): 901-8.


The role of Cdc6 in ensuring complete genome licensing and S phase checkpoint activation., Oehlmann M, Score AJ, Blow JJ., J Cell Biol. April 26, 2004; 165 (2): 181-90.                  


Absence of BLM leads to accumulation of chromosomal DNA breaks during both unperturbed and disrupted S phases., Li W, Kim SM, Lee J, Lee J, Dunphy WG., J Cell Biol. June 21, 2004; 165 (6): 801-12.                


A hypophosphorylated form of RPA34 is a specific component of pre-replication centers., Françon P, Lemaître JM, Dreyer C, Maiorano D, Cuvier O, Méchali M., J Cell Sci. October 1, 2004; 117 (Pt 21): 4909-20.                      


Replication-dependent destruction of Cdt1 limits DNA replication to a single round per cell cycle in Xenopus egg extracts., Arias EE, Walter JC., Genes Dev. January 1, 2005; 19 (1): 114-26.


Initiation of DNA replication requires the RECQL4 protein mutated in Rothmund-Thomson syndrome., Sangrithi MN, Bernal JA, Madine M, Philpott A, Lee J, Lee J, Dunphy WG, Venkitaraman AR., Cell. June 17, 2005; 121 (6): 887-98.


Physical and functional mapping of the replication protein a interaction domain of the werner and bloom syndrome helicases., Doherty KM, Sommers JA, Gray MD, Lee JW, Lee JW, von Kobbe C, Thoma NH, Kureekattil RP, Kenny MK, Brosh RM., J Biol Chem. August 19, 2005; 280 (33): 29494-505.


Sumoylation of the novel protein hRIP{beta} is involved in replication protein A deposition in PML nuclear bodies., Park J, Seo T, Kim H, Choe J., Mol Cell Biol. September 1, 2005; 25 (18): 8202-14.


Analysis of the Xenopus Werner syndrome protein in DNA double-strand break repair., Yan H, McCane J, Toczylowski T, Chen C., J Cell Biol. October 24, 2005; 171 (2): 217-27.              


Phosphorylation of Chk1 by ATM- and Rad3-related (ATR) in Xenopus egg extracts requires binding of ATRIP to ATR but not the stable DNA-binding or coiled-coil domains of ATRIP., Kim SM, Kumagai A, Lee J, Lee J, Dunphy WG., J Biol Chem. November 18, 2005; 280 (46): 38355-64.


Recognition of oxidized thymine base on the single-stranded DNA by replication protein A., Irie D, Ono A, Izuta S., Nucleosides Nucleotides Nucleic Acids. January 1, 2006; 25 (4-6): 439-51.


ORC is necessary at the interphase-to-mitosis transition to recruit cdc2 kinase and disassemble RPA foci., Cuvier O, Lutzmann M, Méchali M., Curr Biol. March 7, 2006; 16 (5): 516-23.


De novo assembly of genuine replication forks on an immobilized circular plasmid in Xenopus egg extracts., Zembutsu A, Waga S., Nucleic Acids Res. July 26, 2006; 34 (13): e91.          

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