Literature DB >> 8390879

Production of human RAP30 and RAP74 in bacterial cells.

B Q Wang1, C F Kostrub, A Finkelstein, Z F Burton.   

Abstract

RAP30 and RAP74 are subunits of RAP30/74 (TFIIF), a general initiation and elongation factor for transcription by RNA polymerase II. Complementary DNA (cDNA) clones have previously been reported encoding human RAP30 and RAP74. Here we report expression of these cDNAs using a T7 RNA polymerase system in Escherichia coli. Production of human RAP30 was very efficient using the expression vector pET11d. RAP30 accumulated within inclusion bodies and was solubilized using guanidine hydrochloride. After removal of the denaturant, RAP30 was soluble and active in accurate transcription. Approximately 44 mg of highly purified and soluble RAP30 was obtained from a 1-liter culture of cells. Production of RAP74 was more problematic, because a mixture of full length RAP74 and RAP74 fragments was produced in E. coli. Most RAP74 fragments were shortened by deletion of the COOH-terminus of the protein and probably resulted from premature translation termination. RAP74 was most successfully produced using a pET23d construct, in which the RAP74 peptide was fused to a short polyhistidine stretch at its COOH-terminus. Addition of the polyhistidine sequence allowed purification using a Ni2+ affinity resin. Full length RAP74 carrying this polyhistidine extension was purified in a single step by Ni2+ affinity chromatography in 4 M urea; the yield of RAP74 was approximately 3 mg from a 1-liter culture of cells. RAP74 derivatized with a polyhistidine stretch at its NH2-terminus, on the other hand, remained contaminated with RAP74 fragments after Ni2+ affinity chromatography.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1993        PMID: 8390879     DOI: 10.1006/prep.1993.1027

Source DB:  PubMed          Journal:  Protein Expr Purif        ISSN: 1046-5928            Impact factor:   1.650


  19 in total

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8.  Human RNA polymerase II elongation in slow motion: role of the TFIIF RAP74 alpha1 helix in nucleoside triphosphate-driven translocation.

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9.  Dissection of transcription factor TFIIF functional domains required for initiation and elongation.

Authors:  S Tan; R C Conaway; J W Conaway
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