Distinct roles for two purified factors in transcription of Xenopus mitochondrial DNA

Author:

Antoshechkin I1,Bogenhagen D F1

Affiliation:

1. Department of Pharmacological Sciences, State University of New York at Stony Brook 11794-8651, USA.

Abstract

Transcription of Xenopus laevis mitochondrial DNA (xl-mtDNA) by the mitochondrial RNA polymerase requires a dissociable factor. This factor was purified to near homogeneity and identified as a 40-kDa protein. A second protein implicated in the transcription of mtDNA, the Xenopus homolog of the HMG box protein mtTFA, was also purified to homogeneity and partially sequenced. The sequence of a cDNA clone encoding xl-mtTFA revealed a high degree of sequence similarity to human and Saccharomyces cerevisiae mtTFA. xl-mtTFA was not required for basal transcription from a minimal mtDNA promoter, and this HMG box factor could not substitute for the basal factor, which is therefore designated xl-mtTFB. An antibody directed against the N terminus of xl-mtTFA did not cross-react with xl-mtTFB. xl-mtTFA is an abundant protein that appears to have at least two functions in mitochondria. First, it plays a major role in packaging mtDNA within the organelle. Second, DNase I footprinting experiments identified preferred binding sites for xl-mtTFA within the control region of mtDNA next to major mitochondrial promoters. We show that binding of xl-mtTFA to a site separating the two clusters of bidirectional promoters selectively stimulates specific transcription in vitro by the basal transcription machinery, comprising mitochondrial RNA polymerase and xl-mtTFB.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference40 articles.

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3. Template sequences required for transcription of Xenopus laevis mitochondrial DNA from two bidirectional promoters;Bogenhagen D. F.;Mol. Cell. Biol.,1988

4. Accurate in vitro transcription of Xenopus laevis mitochondrial DNA from two bidirectional promoters;Bogenhagen D. F.;Mol. Cell. Biol.,1986

5. Mapping of the displacement loop within the nucleotide sequence of Xenopus laevis mitochondrial DNA;Cairns S. S.;J. Biol. Chem.,1986

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