Abstract

RAP74, the large subunit of human transcription factor IIF (TFIIF), has been analyzed by deletion mutagenesis and in vitro assays to map functional domains. Tight binding to the RAP30 subunit involves amino acids between positions 1-172. Amino acids 1-205 are minimally sufficient to stimulate accurate transcription from the adenovirus major late promoter in an extract system, although C-terminal sequences contribute to activity. A partially masked RNA polymerase II binding domain has been mapped to the C-terminal region of the protein (amino acids 363-444). Sequences near the N terminus and within the central portion of RAP74 affect accessibility of this domain. Extending this domain to 363-486 creates a peptide that binds polymerase and DNA and inhibits transcription initiation in vitro from non-promoter DNA sites. This larger C-terminal domain may modify polymerase interaction with template during initiation and/or elongation of RNA chains.

Highlights

  • transcription factor IIF (TFIIF) is structurally and functionally related to bacterial sigma factors

  • Some mutants have been constructed with internal deletions, and these have been named according to the amino acids removed from the sequence

  • The first report of RAP74 mutagenesis was by Yonaha et al (36)

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Summary

Introduction

TFIIF is structurally and functionally related to bacterial sigma factors. In humans TFIIF is a heteromeric factor, consisting of 28-kDa (RAP30) and 58-kDa (RAP74) subunits, that binds directly to RNA polymerase II. A partially masked RNA polymerase II binding domain has been identified in RAP74 by deletion of N-terminal and central amino acid sequences. Each of these mutants was observed to interact weakly with RNA polymerase II (Fig. 4 and data not shown), indicating that a second domain may be located in the region between amino acids 136 –258 that may interact with polymerase or DNA to inhibit nonspecific transcription.

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