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Proximal Sequence Element-binding Transcription Factor (PTF) is a Multisubunit Complex Required for Transcription of Both RNA Polymerase II- and RNA Polymerase III-dependent Small Nuclear RNA Genes

Overview
Journal Mol Cell Biol
Specialty Cell Biology
Date 1995 Apr 1
PMID 7891697
Citations 73
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Abstract

The proximal sequence element (PSE), found in both RNA polymerase II (Pol II)- and RNA Pol III-transcribed small nuclear RNA (snRNA) genes, is specifically bound by the PSE-binding transcription factor (PTF). We have purified PTF to near homogeneity from HeLa cell extracts by using a combination of conventional and affinity chromatographic methods. Purified PTF is composed of four polypeptides with apparent molecular masses of 180, 55, 45, and 44 kDa. A combination of preparative electrophoretic mobility shift and sodium dodecyl sulfate-polyacrylamide gel electrophoresis analyses has conclusively identified these four polypeptides as subunits of human PTF, while UV cross-linking experiments demonstrate that the largest subunit of PTF is in close contact with the PSE. The purified PTF activates transcription from promoters of both Pol II- and Pol III-transcribed snRNA genes in a PSE-dependent manner. In addition, we have investigated factor requirements in transcription of Pol III-dependent snRNA genes. We show that in extracts that have been depleted of TATA-binding protein (TBP) and associated factors, recombinant TBP restores transcription from U6 and 7SK promoters but not from the VAI promoter, whereas the highly purified TBP-TBP-associated factor complex TFIIIB restores transcription from the VAI but not the U6 or 7SK promoter. Furthermore, by complementation of heat-treated extracts lacking TFIIIC activity, we show that TFIIIC1 is required for transcription of both the 7SK and VAI genes, whereas TFIIIC2 is required only for transcription of the VAI gene. From these observations, we conclude (i) that PTF and TFIIIC2 function as gene-specific as gene-specific factors for PSE-and B-box-containing Pol III genes, respectively, (ii) that the form of TBP used by class III genes with upstream promoter elements differs from the from used by class III genes with internal promoters, and (iii) that TFIIIC1 is required for both internal and external Pol III promoters.

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References
1.
Goodrich J, Tjian R . TBP-TAF complexes: selectivity factors for eukaryotic transcription. Curr Opin Cell Biol. 1994; 6(3):403-9. DOI: 10.1016/0955-0674(94)90033-7. View

2.
Lagna G, Kovelman R, Sukegawa J, Roeder R . Cloning and characterization of an evolutionarily divergent DNA-binding subunit of mammalian TFIIIC. Mol Cell Biol. 1994; 14(5):3053-64. PMC: 358673. DOI: 10.1128/mcb.14.5.3053-3064.1994. View

3.
Kadonaga J, Tjian R . Affinity purification of sequence-specific DNA binding proteins. Proc Natl Acad Sci U S A. 1986; 83(16):5889-93. PMC: 386402. DOI: 10.1073/pnas.83.16.5889. View

4.
Yoshinaga S, Boulanger P, Berk A . Resolution of human transcription factor TFIIIC into two functional components. Proc Natl Acad Sci U S A. 1987; 84(11):3585-9. PMC: 304919. DOI: 10.1073/pnas.84.11.3585. View

5.
Murphy S, Di Liegro C, Melli M . The in vitro transcription of the 7SK RNA gene by RNA polymerase III is dependent only on the presence of an upstream promoter. Cell. 1987; 51(1):81-7. DOI: 10.1016/0092-8674(87)90012-2. View