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Characterization of a novel open reading frame,urf a,in the mitochondrial genome of fission yeast: Correlation of urf a mutations with a mitochondrial mutator phenotype and a possible role of frameshifting in urf a expression
Authors:Manfred Zimmer  Mechthild Krabusch  Klaus Wolf
Affiliation:(1) Institut für Mikrobiologie und Weinforschung der Johannes Gutenberg-Universität, Becherweg 15, W-6500 Mainz, Germany
Abstract:Summary Between the genes for tRNAgln and tRNAile an open reading frame of 227 amino acids has been identified which is unique among known mitochondrial genomes and which has been termed urf a (Lang et al. 1983; Kornrumpf et al. 1984). It uses the ldquomitochondrialrdquo genetic code, i.e., it contains a TGA codon, whereas all other protein-encoding genes, and all but one intronic open reading frame, use the ldquostandardrdquo genetic code (UGG for tryptophan). A previous paper has demonstrated that ldquomutatorrdquo strains show an increased formation of mitochondrial drug-resistant and respiration-deficient mutants (including deletions). In this paper we show that the mutator activity is correlated with mutations in urf a. A detailed analysis of one urf a mutant is presented (anar-6), where the deletion of an A residue leads to a frameshift mutation and consequently to premature termination of the putative protein. The phenotype of colonies originating from a single mutant clone varies from no growth up to full growth on non-fermentable substrate. This phenomenon of phenotypic segregation can be explained by the ability of the cell to perform translational frameshifting. A detailed analysis of the DNA sequence and the putative urf a protein will be presented and a possible function of the protein will be discussed.Dedicated to Professor Fritz Kaudewitz on the occasion of his 70th birthday on March 11, 1991.
Keywords:Schizosaccharomyces pombe  Mutator  Mitochondrial genome  Frameshift suppression
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