ERCC3
Күренеш
ERCC3 (ингл. ) — аксымы, шул ук исемдәге ген тарафыннан кодлана торган югары молекуляр органик матдә.[34][35]
Искәрмәләр
[үзгәртү | вики-текстны үзгәртү]- 1 2 3 UniProt
- 1 2 3 4 5 Egly J., Oksenych V., Coin F. Distinct roles for the XPB/p52 and XPD/p44 subcomplexes of TFIIH in damaged DNA opening during nucleotide excision repair // Mol. Cell — Cell Press, Elsevier, 2007. — ISSN 1097-2765; 1097-4164 — doi:10.1016/J.MOLCEL.2007.03.009 — PMID:17466626
- ↑ Egly J. M., O Gileadi Distinct regions of MAT1 regulate cdk7 kinase and TFIIH transcription activities // J. Biol. Chem. / L. M. Gierasch — Baltimore [etc.]: American Society for Biochemistry and Molecular Biology, 2000. — ISSN 0021-9258; 1083-351X; 1067-8816 — doi:10.1074/JBC.M002578200 — PMID:10801852
- 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 GOA
- 1 2 3 4 5 6 7 8 9 10 GOA
- 1 2 3 4 5 E Kershnar, Wu S. Y., Chiang C. M. Immunoaffinity purification and functional characterization of human transcription factor IIH and RNA polymerase II from clonal cell lines that conditionally express epitope-tagged subunits of the multiprotein complexes // J. Biol. Chem. / L. M. Gierasch — Baltimore [etc.]: American Society for Biochemistry and Molecular Biology, 1998. — ISSN 0021-9258; 1083-351X; 1067-8816 — doi:10.1074/JBC.273.51.34444 — PMID:9852112
- 1 2 3 4 5 6 7 Egly J., Hoeijmakers J. H., T Seroz A 3' --> 5' XPB helicase defect in repair/transcription factor TFIIH of xeroderma pigmentosum group B affects both DNA repair and transcription // J. Biol. Chem. / L. M. Gierasch — Baltimore [etc.]: American Society for Biochemistry and Molecular Biology, 1996. — ISSN 0021-9258; 1083-351X; 1067-8816 — doi:10.1074/JBC.271.27.15898 — PMID:8663148
- 1 2 N Iyer, Reagan M. S., Wu K. J. et al. Interactions involving the human RNA polymerase II transcription/nucleotide excision repair complex TFIIH, the nucleotide excision repair protein XPG, and Cockayne syndrome group B (CSB) protein // Biochemistry — ACS, 1996. — ISSN 0006-2960; 1520-4995; 1943-295X — doi:10.1021/BI9524124 — PMID:8652557
- 1 2 3 Egly J., Hoeijmakers J. H., T Seroz A 3' --> 5' XPB helicase defect in repair/transcription factor TFIIH of xeroderma pigmentosum group B affects both DNA repair and transcription // J. Biol. Chem. / L. M. Gierasch — Baltimore [etc.]: American Society for Biochemistry and Molecular Biology, 1996. — ISSN 0021-9258; 1083-351X; 1067-8816 — doi:10.1074/JBC.271.27.15898 — PMID:8663148
- 1 2 3 4 Egly J., Oksenych V., Coin F. Distinct roles for the XPB/p52 and XPD/p44 subcomplexes of TFIIH in damaged DNA opening during nucleotide excision repair // Mol. Cell — Cell Press, Elsevier, 2007. — ISSN 1097-2765; 1097-4164 — doi:10.1016/J.MOLCEL.2007.03.009 — PMID:17466626
- 1 2 Hoeijmakers J. H. A presumed DNA helicase encoded by ERCC-3 is involved in the human repair disorders xeroderma pigmentosum and Cockayne's syndrome // Cell — Cell Press, Elsevier, 1990. — ISSN 0092-8674; 1097-4172 — doi:10.1016/0092-8674(90)90122-U — PMID:2167179
- ↑ Egly J., Hoeijmakers J. H. The XPB subunit of repair/transcription factor TFIIH directly interacts with SUG1, a subunit of the 26S proteasome and putative transcription factor // Nucleic Acids Res. — OUP, University of Oxford, 1997. — ISSN 0305-1048; 1362-4962; 1362-4954 — doi:10.1093/NAR/25.12.2274 — PMID:9173976
- ↑ Eggeling F. v., Baniahmad A. Detection and identification of transcription factors as interaction partners of alien in vivo // Cell cycle (Georgetown, Tex. Online) / M. Blagosklonny — Landes Bioscience, Taylor & Francis, 2007. — ISSN 1538-4101; 1551-4005 — doi:10.4161/CC.6.8.4108 — PMID:17438371
- 1 2 Drapkin R. Human cyclin-dependent kinase-activating kinase exists in three distinct complexes // Proc. Natl. Acad. Sci. U.S.A. / M. R. Berenbaum — [Washington, etc.], USA: National Academy of Sciences [etc.], 1996. — ISSN 0027-8424; 1091-6490 — doi:10.1073/PNAS.93.13.6488 — PMID:8692842
- 1 2 3 E Kershnar, Wu S. Y., Chiang C. M. Immunoaffinity purification and functional characterization of human transcription factor IIH and RNA polymerase II from clonal cell lines that conditionally express epitope-tagged subunits of the multiprotein complexes // J. Biol. Chem. / L. M. Gierasch — Baltimore [etc.]: American Society for Biochemistry and Molecular Biology, 1998. — ISSN 0021-9258; 1083-351X; 1067-8816 — doi:10.1074/JBC.273.51.34444 — PMID:9852112
- 1 2 3 4 5 6 7 8 9 10 11 Livstone M. S., Thomas P. D., Lewis S. E. et al. Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium // Brief. Bioinform. — OUP, 2011. — ISSN 1467-5463; 1477-4054 — doi:10.1093/BIB/BBR042 — PMID:21873635
- ↑ Egly J., Hoeijmakers J. H. The XPB subunit of repair/transcription factor TFIIH directly interacts with SUG1, a subunit of the 26S proteasome and putative transcription factor // Nucleic Acids Res. — OUP, University of Oxford, 1997. — ISSN 0305-1048; 1362-4962; 1362-4954 — doi:10.1093/NAR/25.12.2274 — PMID:9173976
- 1 2 3 4 5 6 7 8 9 10 11 Livstone M. S., Thomas P. D., Lewis S. E. et al. Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium // Brief. Bioinform. — OUP, 2011. — ISSN 1467-5463; 1477-4054 — doi:10.1093/BIB/BBR042 — PMID:21873635
- ↑ Egly J., L. Schaeffer, V. Moncollin et al. p53 modulation of TFIIH-associated nucleotide excision repair activity, p53 modulation of TFIIH–associated nucleotide excision repair activity // Nature Genetics / M. Axton, T. Faial — NPG, 1995. — ISSN 1061-4036; 1546-1718 — doi:10.1038/NG0695-188 — PMID:7663514
- ↑ Drapkin R. Human cyclin-dependent kinase-activating kinase exists in three distinct complexes // Proc. Natl. Acad. Sci. U.S.A. / M. R. Berenbaum — [Washington, etc.], USA: National Academy of Sciences [etc.], 1996. — ISSN 0027-8424; 1091-6490 — doi:10.1073/PNAS.93.13.6488 — PMID:8692842
- ↑ Nogales E., Tjian R. Near-atomic resolution visualization of human transcription promoter opening // Nature / M. Skipper — NPG, Springer Science+Business Media, 2016. — ISSN 1476-4687; 0028-0836 — doi:10.1038/NATURE17970 — PMID:27193682
- ↑ Egly J., L. Schaeffer, V. Moncollin et al. p53 modulation of TFIIH-associated nucleotide excision repair activity, p53 modulation of TFIIH–associated nucleotide excision repair activity // Nature Genetics / M. Axton, T. Faial — NPG, 1995. — ISSN 1061-4036; 1546-1718 — doi:10.1038/NG0695-188 — PMID:7663514
- ↑ Khan S. G., Kraemer K. H. Influence of XPB helicase on recruitment and redistribution of nucleotide excision repair proteins at sites of UV-induced DNA damage // DNA Repair — Elsevier, 2007. — ISSN 1568-7864; 1568-7856 — doi:10.1016/J.DNAREP.2007.03.025 — PMID:17509950
- 1 2 Sancar A. Isolation and characterization of two human transcription factor IIH (TFIIH)-related complexes: ERCC2/CAK and TFIIH // Proc. Natl. Acad. Sci. U.S.A. / M. R. Berenbaum — [Washington, etc.], USA: National Academy of Sciences [etc.], 1996. — ISSN 0027-8424; 1091-6490 — doi:10.1073/PNAS.93.13.6482 — PMID:8692841
- ↑ Marini F., Giannattasio M., Plevani P. et al. DNA nucleotide excision repair-dependent signaling to checkpoint activation // Proc. Natl. Acad. Sci. U.S.A. / M. R. Berenbaum — [Washington, etc.], USA: National Academy of Sciences [etc.], 2006. — ISSN 0027-8424; 1091-6490 — doi:10.1073/PNAS.0605446103 — PMID:17088560
- ↑ Hoeijmakers J. H. The XPB and XPD DNA helicases are components of the p53-mediated apoptosis pathway // Genes Dev. — Cold Spring Harbor Laboratory Press, 1996. — ISSN 0890-9369; 1549-5477 — doi:10.1101/GAD.10.10.1219 — PMID:8675009
- ↑ Hu G., Liu L., Zhang J. et al. The role of XPB in cell apoptosis and viability and its relationship with p53, p21(waf1/cip1) and c-myc in hepatoma cells // Digestive and Liver Disease — Elsevier, 2006. — ISSN 1590-8658; 1878-3562 — doi:10.1016/J.DLD.2006.06.009 — PMID:16914395
- ↑ Egly J. Trichothiodystrophy, a transcription syndrome // Trends in Genetics — Elsevier, 2001. — ISSN 0168-9525; 1362-4555 — doi:10.1016/S0168-9525(01)02280-6 — PMID:11335038
- ↑ Kirsch-Volders M., Roelants M. Genetic susceptibility of newborn daughters to oxidative stress // Toxicol. Lett. — Elsevier, 2007. — ISSN 0378-4274; 1879-3169 — doi:10.1016/J.TOXLET.2007.05.014 — PMID:17614221
- 1 2 3 Khan S. G., Kraemer K. H. Influence of XPB helicase on recruitment and redistribution of nucleotide excision repair proteins at sites of UV-induced DNA damage // DNA Repair — Elsevier, 2007. — ISSN 1568-7864; 1568-7856 — doi:10.1016/J.DNAREP.2007.03.025 — PMID:17509950
- 1 2 Sancar A. Isolation and characterization of two human transcription factor IIH (TFIIH)-related complexes: ERCC2/CAK and TFIIH // Proc. Natl. Acad. Sci. U.S.A. / M. R. Berenbaum — [Washington, etc.], USA: National Academy of Sciences [etc.], 1996. — ISSN 0027-8424; 1091-6490 — doi:10.1073/PNAS.93.13.6482 — PMID:8692841
- ↑ Egly J. Trichothiodystrophy, a transcription syndrome // Trends in Genetics — Elsevier, 2001. — ISSN 0168-9525; 1362-4555 — doi:10.1016/S0168-9525(01)02280-6 — PMID:11335038
- ↑ Marini F., Giannattasio M., Plevani P. et al. DNA nucleotide excision repair-dependent signaling to checkpoint activation // Proc. Natl. Acad. Sci. U.S.A. / M. R. Berenbaum — [Washington, etc.], USA: National Academy of Sciences [etc.], 2006. — ISSN 0027-8424; 1091-6490 — doi:10.1073/PNAS.0605446103 — PMID:17088560
- ↑ HUGO Gene Nomenclature Commitee, HGNC:29223 (ингл.). әлеге чыганактан 2015-10-25 архивланган. 18 сентябрь, 2017 тикшерелгән.
- ↑ UniProt, Q9ULJ7 (ингл.). 18 сентябрь, 2017 тикшерелгән.
Чыганаклар
[үзгәртү | вики-текстны үзгәртү]- Степанов В.М. (2005). Молекулярная биология. Структура и функция белков. Москва: Наука. ISBN 5-211-04971-3.(рус.)
- Bruce Alberts, Alexander Johnson, Julian Lewis, Martin Raff, Keith Roberts, Peter Walter (2002). Molecular Biology of the Cell (вид. 4th). Garland. ISBN 0815332181.(ингл.)