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EMBO J
1984 Aug 01;38:1761-8. doi: 10.1002/j.1460-2075.1984.tb02043.x.
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Isolation of a transcription complex for ribosomal 5S RNA.
Wingender E
,
Shi XP
,
Houpert A
,
Seifart KH
.
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Cloned 5S rRNA genes from Xenopus borealis oocytes can be used to assemble functional transcription complexes from cytoplasmic HeLa cell extracts as a source for polymerase III and all factors additionally required for faithful 5S RNA transcription. Such complexes can be isolated by glycerol gradient ultracentrifugation and non-denaturing gel electrophoresis. They contain less than 1% of the cellular protein and retain their fidelity to synthesize 5S rRNA. The assembly of the complex is unaffected by KCl concentrations up to 140 mM whereas the transcription of 5S rRNA by the isolated complex is significantly reduced at this ionic strength. This indicates that the latter process, involving re-initiation by RNA polymerase III, is more sensitive to elevated salt concentrations than is the assembly of the transcription complexes. Furthermore, we show that complex formation also takes place in the absence of exogenously added nucleoside triphosphates, although this results in a slight shift in the sedimentation position which can be reversed by addition of the initial nucleotides GTP and CTP. We have analyzed the isolated transcription complexes by the protein blotting technique in an attempt to characterize their DNA-binding components. The results show a single component, corresponding to a protein with a mol. wt. of approximately 45 kd, which binds selectively, but not exclusively to a DNA fragment containing the 5S gene. The possible relationship of this protein to transcription factor IIIA from Xenopus oocytes is discussed.
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,
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1976,
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Brown,
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1978,
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,
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Buchanan,
Regulation of nucleotide and pentose synthesis in resting and stimulated 3T6 fibroblasts.
1982,
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Chambon,
Eukaryotic nuclear RNA polymerases.
1975,
Pubmed
,
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Davison,
Formation of stable preinitiation complexes between eukaryotic class B transcription factors and promoter sequences.
1983,
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Engelke,
Specific interaction of a purified transcription factor with an internal control region of 5S RNA genes.
1980,
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,
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Gruissem,
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,
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Hanas,
Xenopus transcription factor A requires zinc for binding to the 5 S RNA gene.
1983,
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,
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Honda,
Association of a 5S gene transcription factor with 5S RNA and altered levels of the factor during cell differentiation.
1980,
Pubmed
,
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Laemmli,
Cleavage of structural proteins during the assembly of the head of bacteriophage T4.
1970,
Pubmed
Lassar,
Transcription of class III genes: formation of preinitiation complexes.
1983,
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,
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Manley,
DNA-dependent transcription of adenovirus genes in a soluble whole-cell extract.
1980,
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Pelham,
Related 5S RNA transcription factors in Xenopus oocytes and somatic cells.
1981,
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,
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Pelham,
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1980,
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,
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Rigby,
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1977,
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Ruet,
Isolation of a class C transcription factor which forms a stable complex with tRNA genes.
1984,
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Schaack,
Transcription of eukaryotic tRNA genes in vitro. II. Formation of stable complexes.
1983,
Pubmed
Segall,
Multiple factors are required for the accurate transcription of purified genes by RNA polymerase III.
1980,
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Sharp,
Transcription of eukaryotic tRNA genes in vitro. I. Analysis of control regions using a competition assay.
1983,
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Shastry,
Multiple factors involved in the transcription of class III genes in Xenopus laevis.
1982,
Pubmed
,
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Shi,
Faithful transcription of ribosomal 5-S RNA in vitro depends on the presence of several factors.
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,
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Towbin,
Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications.
1979,
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Wandelt,
Formation of stable preinitiation complexes is a prerequisite for ribosomal DNA transcription in vitro.
1983,
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Weil,
Faithful transcription of eukaryotic genes by RNA polymerase III in systems reconstituted with purified DNA templates.
1979,
Pubmed
,
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Wormington,
A quantitative assay for Xenopus 5S RNA gene transcription in vitro.
1981,
Pubmed
,
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Yamamoto,
Synthesis of ribosomal 5S RNA by isolated nuclei from HeLa cells in vitro.
1977,
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