↑Finkelstein A, Kostrub CF, Li J, Chavez DP, Wang BQ, Fang SM, Greenblatt J, Burton ZF (March 1992). "A cDNA encoding RAP74, a general initiation factor for transcription by RNA polymerase II". Nature. 355 (6359): 464–7. doi:10.1038/355464a0. PMID1734284.
↑Archambault J, Pan G, Dahmus GK, Cartier M, Marshall N, Zhang S, Dahmus ME, Greenblatt J (October 1998). "FCP1, the RAP74-interacting subunit of a human protein phosphatase that dephosphorylates the carboxyl-terminal domain of RNA polymerase IIO". J. Biol. Chem. 273 (42): 27593–601. doi:10.1074/jbc.273.42.27593. PMID9765293.
↑Joliot V, Demma M, Prywes R (February 1995). "Interaction with RAP74 subunit of TFIIF is required for transcriptional activation by serum response factor". Nature. 373 (6515): 632–5. doi:10.1038/373632a0. PMID7854423.
↑Zhu H, Joliot V, Prywes R (February 1994). "Role of transcription factor TFIIF in serum response factor-activated transcription". J. Biol. Chem. 269 (5): 3489–97. PMID8106390.
↑Dikstein R, Ruppert S, Tjian R (March 1996). "TAFII250 is a bipartite protein kinase that phosphorylates the base transcription factor RAP74". Cell. 84 (5): 781–90. doi:10.1016/s0092-8674(00)81055-7. PMID8625415.
↑ 11.011.1Ruppert S, Tjian R (November 1995). "Human TAFII250 interacts with RAP74: implications for RNA polymerase II initiation". Genes Dev. 9 (22): 2747–55. doi:10.1101/gad.9.22.2747. PMID7590250.
↑Fang SM, Burton ZF (May 1996). "RNA polymerase II-associated protein (RAP) 74 binds transcription factor (TF) IIB and blocks TFIIB-RAP30 binding". J. Biol. Chem. 271 (20): 11703–9. doi:10.1074/jbc.271.20.11703. PMID8662660.
Further reading
Kato H, Sumimoto H, Pognonec P, Chen CH, Rosen CA, Roeder RG (1992). "HIV-1 Tat acts as a processivity factor in vitro in conjunction with cellular elongation factors". Genes Dev. 6 (4): 655–66. doi:10.1101/gad.6.4.655. PMID1559613.
Aso T, Vasavada HA, Kawaguchi T, Germino FJ, Ganguly S, Kitajima S, Weissman SM, Yasukochi Y (1992). "Characterization of cDNA for the large subunit of the transcription initiation factor TFIIF". Nature. 355 (6359): 461–4. doi:10.1038/355461a0. PMID1734283.
Adams MD, Kerlavage AR, Fleischmann RD, Fuldner RA, Bult CJ, Lee NH, Kirkness EF, Weinstock KG, Gocayne JD, White O (1995). "Initial assessment of human gene diversity and expression patterns based upon 83 million nucleotides of cDNA sequence". Nature. 377 (6547 Suppl): 3–174. PMID7566098.
Ruppert S, Tjian R (1995). "Human TAFII250 interacts with RAP74: implications for RNA polymerase II initiation". Genes Dev. 9 (22): 2747–55. doi:10.1101/gad.9.22.2747. PMID7590250.
Joliot V, Demma M, Prywes R (1995). "Interaction with RAP74 subunit of TFIIF is required for transcriptional activation by serum response factor". Nature. 373 (6515): 632–5. doi:10.1038/373632a0. PMID7854423.
Zhu H, Joliot V, Prywes R (1994). "Role of transcription factor TFIIF in serum response factor-activated transcription". J. Biol. Chem. 269 (5): 3489–97. PMID8106390.
Aso T, Tsai P, Kawaguchi T, Menninger JC, Kitajima S, Yasukochi Y, Ward DC, Weissman SM (1993). "Assignment of the human GTF2F1 gene to chromosome 19p13.3". Genomics. 16 (1): 252–3. doi:10.1006/geno.1993.1168. PMID8486367.
Dikstein R, Ruppert S, Tjian R (1996). "TAFII250 is a bipartite protein kinase that phosphorylates the base transcription factor RAP74". Cell. 84 (5): 781–90. doi:10.1016/S0092-8674(00)81055-7. PMID8625415.
Fang SM, Burton ZF (1996). "RNA polymerase II-associated protein (RAP) 74 binds transcription factor (TF) IIB and blocks TFIIB-RAP30 binding". J. Biol. Chem. 271 (20): 11703–9. doi:10.1074/jbc.271.20.11703. PMID8662660.
McEwan IJ, Dahlman-Wright K, Ford J, Wright AP (1996). "Functional interaction of the c-Myc transactivation domain with the TATA binding protein: evidence for an induced fit model of transactivation domain folding". Biochemistry. 35 (29): 9584–93. doi:10.1021/bi960793v. PMID8755740.
Zhou Q, Sharp PA (1996). "Tat-SF1: cofactor for stimulation of transcriptional elongation by HIV-1 Tat". Science. 274 (5287): 605–10. doi:10.1126/science.274.5287.605. PMID8849451.
Parada CA, Roeder RG (1996). "Enhanced processivity of RNA polymerase II triggered by Tat-induced phosphorylation of its carboxy-terminal domain". Nature. 384 (6607): 375–8. doi:10.1038/384375a0. PMID8934526.
1nha: Solution Structure of the Carboxyl-Terminal Domain of RAP74 and NMR Characterization of the FCP-Binding Sites of RAP74 and CTD of RAP74, the subunit of Human TFIIF