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Aboussekhra, A., Biggerstaff, M., Shivji, M. K. K., Vilpo, J. A., Moncollin, V., Podust, V. N., Protic\253, M., Hubscher, U., Egly, J.-M. and Wood, R. D (1995). Mammalian DNA nucleotide excision repair reconstituted with purified protein components. Cell 80, 859-868.[Medline]

Aboussekhra, A. and Wood, R. D (1995). Detection of excision repair incisions in human fibroblast by immunostaining for PCNA. Exp. Cell Res 221, 326-332.[Medline]

Abramic\253, M., Levine, A. S. and Protic\253, M (1991). Purification of UV-inducible, damage-specific DNA-binding protein from primate cells. J. Biol. Chem 266, 22493-22500.[Abstract/Free Full Text]

Burns, J. L., Guzder, S. N., Sung, P., Prakash, S. and Prakash, L (1996). An affinity of human replication protein A for ultraviolet-damaged DNA. J. Biol. Chem 271, 11607-11610.[Abstract/Free Full Text]

Chu, G. and Chang, E (1988). Xeroderma pigmentosum group E cells lack a nuclear factor that binds to damaged DNA. Science 242, 564-567.[Abstract/Free Full Text]

Cleaver, J. E., Cortes, F., Lutze, L. H., Morgan, W. F., Player, A. N. and Mitchell, D. L (1987). Unique DNA repair properties of a xeroderma pigmentosum revertant. Mol. Cell. Biol 7, 3353-3357.[Abstract/Free Full Text]

Clugston, C. K., McLaughlin, K., Kenny, M. K. and Brown, R (1992). Binding of human single-stranded DNA binding protein to DNA damaged bythe anticancer drug cis-diamminedichloroplatinum (II). Cancer Res 52, 6375-6379.[Abstract/Free Full Text]

Coverley, D., Kenny, M. K., Munn, M., Rupp, W. D., Lane, D. P. and Wood, R. D (1991). Requirement for the replication protein SSB in human DNA excision repair. Nature 349, 538-541.[Medline]

Dualan, R., Brody, T., Keeney, S., Nichols, A. F., Admon, A. and Linn, S (1995). Chromosomal localization and cDNA cloning of the genes (DDB1 and DDB2) for the p127 and p48 subunits of a human damage-specific DNA binding protein. Genomics 29, 62-69.[Medline]

Evans, M. K., Robbins, J. H., Ganges, M. B., Taronr, R. E., Nairn, R. S. and Bohr, V. A (1993). Gene-specific DNA repair in xeroderma pigmentosum complementation groups A, C , D and F. J. Biol. Chem 268, 4839-4847.[Abstract/Free Full Text]

Guzder, S. N., Habraken, Y., Sung, P., Prakash, L. and Prakash, S (1995). Reconstitution of yeast nucleotide excision repair with purified Rad proteins, replication protein A and transcription factor TFIIH. J. Biol. Chem 270, 12973-12976.[Abstract/Free Full Text]

He, Z., Henricksen, L. A., Wold, M. S. and Ingles, C. J (1995). RPA involvement in the damage-recognition and incision steps of nucleotide excision repair. Nature 374, 566-569.[Medline]

Henning, K. A., Li, L., Iyer, N., McDaniel, L. D., Reagan, M. S., Legerski, R., Schultz, R. A., Stefanini, M., Lehmann, A. R., Mayne, L. V., et al (1995). The genetic defect in Cockayne syndrome is associated with a defect in repair of UV-induced DNA damage in transcriptionally active DNA. Cell 82, 555-564.[Medline]

Hirschfeld, S., Levine, A. S., Ozato, K. and Protic\253 , M (1990). A constitutive damage-specific DNA-binding protein is synthesized at higher levels in UV-irradiated primate cells. Mol. Cell. Biol 10, 2041-2048.[Abstract/Free Full Text]

Hurwitz, J., Dean, F. B., Kwong, A. D. and Lee, S. H (1990). The in vitro replication of the containing SV 40 origin. J. Biol. Chem 265, 18043-18046.[Free Full Text]

Hwang, J. B. and Chu, G (1993). Purification and characterization of a human protein that binds to damaged DNA. Biochemistry 32, 1657-1666.[Medline]

Hwang, J. B., Liao, C. J. and Chu, G (1996). Isolation of a cDNA encoding a UV-damaged DNA binding factor defective in xeroderma pigmentosum group E cells. Mutat. Res 362, 105-117.[Medline]

Jones, C. J., Cleaver, J. E. and Wood, R. D (1992). Repair of damaged DNA by extracts from a xeroderma pigmentosum complementation group A revertant and expression of protein absent in its parental cell line. Nucl. Acids Res 20, 991-995.[Abstract/Free Full Text]

Jones, C. J. and Wood, R. D (1993). Preferential binding of the xeroderma pigmentosum group A complementing protein to damaged DNA. Biochemistry 32, 12096-12104.[Medline]

Kataoka, H. and Fujiwara, Y (1991). UV damage-specific DNA-binding protein in xeroderma pigmentosum complementation group E. Biochem. Biophys. Res. Commun 175, 1139-1143.[Medline]

Kazantsev, A., Mu, D., Nichols, A. F., Zhao, X., Linn, S. and Sancar, A (1996). Functional complementation of xeroderma pigmentosum complementation group E by replication protein A in an in vitro system. Proc. Nat. Acad. Sci. USA 93, 5014-5018.[Abstract/Free Full Text]

Keeney, S., Wein, H. and Linn, S (1992). Biochemical heterogeneity in xeroderma pigmentosum complementation group E. Mutat. Res 273, 49-56.[Medline]

Keeney, S., Chang, G. J. and Linn, S (1993). Characterization of a human DNA damage binding protein implicated in xeroderma pigmentosum E. J. Biol. Chem 268, 21293-21300.[Abstract/Free Full Text]

Keeney, S., Eker, A. P. M., Brody, T., Vermeulen, W., Bootsma, D., Hoeijmakers, J. H. J. and Linn, S (1994). Correction of the DNA repair defect in xeroderma pigmentosum group E by injection of a DNA damage-binding protein. Proc. Nat. Acad. Sci. USA 91, 4053-4056.[Abstract/Free Full Text]

Kenny, M. K., Schlegel, U., Furneaux, H. and Hurwitz, J (1990). A role of human single-stranded DNA binding protein and its individual subunits in simian virus 40 DNA replication. J. Biol. Chem 265, 7693-7700.[Abstract/Free Full Text]

Lee, T.-H., Elledge, S. J. and Butel, J. S (1995). Hepatitis B virus X protein interacts with a probable cellular DNA repair protein. Virology 69, 1107-1114.

Li, L., Lu, X., Peterson, C. A. and Legerski, R. J (1995). An interaction between the DNA repair factor XPA and replication protein A appears essential for nucleotide excision repair. Mol. Cell. Biol 15, 5396-5402.[Abstract]

Lommel, L. and Hanawalt, P. C (1993). Increased UV resistance of a xeroderma pigmentosum revertant cell line is correlated with selective repair of the transcribed strand of an expressed gene. Mol. Cell Biol 13, 970-976.[Abstract/Free Full Text]

Matsuda, T., Saijo, M., Kuraoka, I., Kobayashi, T., Nakatsu, Y., Nagai, A.,Enjoji, T., Masutani, C., Sugasawa, K., Hanaoka, F., et. al (1995). DNA repair protein XPA binds replication protein A (RPA). J. Biol. Chem 270, 4152-4157.[Abstract/Free Full Text]

McDowell, M. L., Nguyen, T. and Cleaver, J (1993). A single-site mutation in the XPAC gene alters photoproduct recognition. Mutagenesis 8, 155-161.[Abstract/Free Full Text]

McLenigan, M., Levine, A. S. and Protic\253 , M (1993). Differential expression of pyrimidine dimer-binding proteins in normal and UV light-treated vertebrate cells. Photochem. Photobiol 57, 655-662.[Medline]

Miura, M., Domon, M., Sasaki, T. and Takasaki, Y (1992). Induction of proliferating cell nuclear antigen (PCNA) complex formation in quiescent fibroblasts from a xeroderma pigmentosum patient. J. Cell Physiol 150, 370-376.[Medline]

Miyamoto, I., Miura, N., Niwa, H., Miyazaki, J. and Tanaka, K (1992). Mutational analysis of the structure and function of the xeroderma pigmentosum group A complementing protein. Identification of essential domains for nuclear localization and DNA excision repair. J. Biol. Chem 267, 12182-12187.[Abstract/Free Full Text]

Nagai, A., Saijo, M., Kuraoka, I., Matsuda, T., Kodo, N., Nakatsu, Y., Mimaki, T., Mino, M., Biggerstaff, M., Wood, R. D., et al (1995). Enhancement of damage-specific DNA binding of XPA by interaction with the ERCC1 DNA repair protein. Biochem. Biophys. Res. Commun 211, 960-966.[Medline]

Nichols, A. F. and Sancar, A (1992). Purification of PCNA as a nucleotide excision repair protein. Nucl. Acids Res 20, 2441-2446.

Nichols, A. F., Ong, P. and Linn, S (1996). Mutations specific to the xeroderma pigmentosum group E Ddbphenotype. J. Biol. Chem 271, 24317-24320.[Abstract/Free Full Text]

Park, M. S., Knauf, J. A., Pendergrass, S. H., Coulon, C. H., Strniste, G. F., Marrone, B. L. and MacInnes, M. A (1996). UV-induced movement of the human DNA repair protein, xeroderma pigmentosum type G, in the nucleus. Proc. Nat. Acad Sci. USA 93, 8368-8373.[Abstract/Free Full Text]

Parris, C. N. and Kraemer, K. H (1993). UV-induced mutations in Cockayne syndrome cells are primarily caused by cyclobutane dimer photoproducts while repair of other photoproducts is normal. Proc. Nat. Acad. Sci. USA 90, 7260-7264.[Abstract/Free Full Text]

Protic\253 , M., Hirschfeld, S., Tsang, P. A., Wagner, M., Dixon, K. and Levine, A. S (1989). Induction of a novel damage-specific DNA binding protein correlates with enhanced DNA repair in primate cells. Mol. Toxicol 2, 255-270.[Medline]

Protic\253 , M. and Levine, A. S (1993). Detection of DNA damage-recognition proteins using the band-shift assay and southwestern hybridization. Electrophoresis 14, 682-692.[Medline]

Reardon, J. T., Nichols, A. F., Keeney, S., Smith, C. A., Taylor, J.-S., Linn, S. and Sancar, A (1993). Comparative analysis of binding of human damaged DNA-binding protein (XPE) and E. coli damage recognition protein (UvrA) to the major UV photoproducts; T[c, s]T, T[t, s]T, T[6-4]T, and T[Dewar]T. J. Biol. Chem 268, 21301-21308.[Abstract/Free Full Text]

Robins, P., Jones, C. J., Biggerstaff, M., Lindahl, T. and Wood, R. D (1991). Complementation of DNA repair in xeroderma pigmentosum group A cell extracts by a protein with affinity for damaged DNA. EMBO J 10, 3913-3921.[Medline]

Shivji, M. K. K., Kenny, M. K. and Wood, R. D (1992). Proliferating cell nuclear antigen is required for DNA excision repair. Cell 69, 367-374.[Medline]

Shivji, M. K. K., Podust, V. N., Hubscher, U. and Wood, R. D (1995). Nucleotide excision repair DNA synthesis by DNA polymerase epsilon in the presence of PCNA, RFC, and RPA. Biochemistry 34, 5011-5017.[Medline]

Smith, H. C. and Berezney, R (1982). Nuclear matrix-bound deoxyribonucleic acid synthesis: An in vitro system. Biochemistry 21, 6751-6761.[Medline]

States, J. C. and Myrand, S. P (1996). Splice site mutations in a xeroderma pigmentosum group A patient with delayed onset of neurological disease. Mutat. Res 363, 171-177.[Medline]

Svejstrup, J. Q., Wang, Z., Feaver, W. J., Wu, X., Bushnell, D. A., Donahue, T. F., Friedberg, E. C. and Kornberg, R. D (1995). Different forms of TFIIH for transcription and DNA repair; Hole-TFIIH and a nucleotide excision repairosome. Cell 80, 21-28.[Medline]

Takao, M., Abramic\253, M., Moos, M., Rapic\253 Otrin, V., Wootton, J. C., McLenigan, M., Levine, A. S. and Protic\253, M (1993). A 127 kDa component of a UV-damaged DNA-binding complex, which is defective in some xeroderma pigmentosum group E patients, is homologous to a slime mold protein. Nucl. Acids Res 21, 4111-4118.[Abstract/Free Full Text]

Toschi, L. and Bravo, R (1988). Changes in cyclin/proliferating cell nuclear antigen distribution during DNA synthesis. J. Cell Biol 107, 1623-1628.[Abstract/Free Full Text]

Treiber, D. K., Chen, Z. and Essigmann, J. M (1992). An UV light-damaged DNA recognition protein absent in xeroderma pigmentosum group E cells binds selectively to pyrimidine (6-4) pyrimidine photoproducts. Nucl. Acids Res 20, 5805-5810.[Abstract/Free Full Text]

van Hoffen, A., Natarajan, A. T., Mayne, L. V., van Zeeland, A. A., Mullenders, L. H. F. and Venema, J (1993). Deficient repair of the transcribed strand of active genes in Cockayne's syndrome cells. Nucl. Acids Res 21, 5890-5895.[Abstract/Free Full Text]

van Hoffen, A., Venema, J., Meschini, R., van Zeeland, A. A. and Mullenders, L. H. F (1995). Transcription-coupled repair removes both cyclobutane pyrimidine dimers and 6-4 photoproducts with equal efficiency and in a sequential way from transcribed DNA in xeroderma pigmentosum group C fibroblasts. EMBO J 14, 360-367.[Medline]

Venema, J., van Hoffen, A., Karcagi, V., Natarajan, A. T., van Zeeland, A. A. and Mullenders, L. H. F (1991). Xeroderma pigmentosum complementation group C cells remove pyrimidine dimers selectively from the transcribed strand of active genes. Mol. Cell. Biol 11, 4128-4134.[Abstract/Free Full Text]

Wood, R. D (1996). DNA repair in eukaryotes. Annu. Rev. Biochem 65, 135-167.[Medline]




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