Abstract

The respiratory defect of pet mutants of Saccharomyces cerevisiae assigned to complementation group G120 has been ascribed to their inability to acylate the mitochondrial phenylalanyl tRNA. A fragment of wild type yeast genomic DNA capable of complementing the genetic lesion of G120 mutants has been cloned by transformation with a yeast genomic recombinant library of a representative mutant from this complementation group. The gene designated as MSF1 has been subcloned on a 2.2-kilobase pair fragment and its nucleotide sequence determined. The predicted protein product of MSF1 has a molecular weight of 55,314 and has several domains of high primary sequence homology to the alpha subunit of the Escherichia coli phenylalanyl-tRNA synthetase. Based on the phenotype of G120 mutants and the homology to the bacterial protein, MSF1 is proposed to code for the alpha subunit of yeast mitochondrial phenylalanyl-tRNA synthetase. Disruption of the chromosomal copy of MSF1 in the respiratory-competent haploid strain W303-1B induces a phenotype similar to G120 mutants but does not affect cell viability, indicating that the cytoplasmic phenylalanyl-tRNA synthetase of yeast is encoded by a separate gene. Although the E. coli and yeast mitochondrial aminoacyl-tRNA synthetases are sufficiently similar in their primary sequences to suggest a common evolutionary origin, they have undergone significant changes as evidenced by the low homology in some regions of the polypeptide chains and the presence in the mitochondrial enzyme of two domains that are lacking in the bacterial phenylalanyl-tRNA synthetase.

Highlights

  • The respiratory defeocft pet mutantsof Saccharo- Nuclear genes have been isolated which code for several myces cerevisiaaessigned tocomplementationgroup componentsof the mitochondrial protein synthetic apparatus

  • In allexceptonecase,these proteins genetic lesion of G120 mutants hasbeen cloned by transformation witha yeastgenomic recombinanlitbraryof arepresentative mutant fromcotmhipslementation group

  • Ducesa phenotype similar to G120 mutants bduot es We report here the identificatoiofna nuclearrespiratorynot affect cell viability, indicatthinagt thceytoplasmic deficient mutant of yeast' blocked inmitochondrial phenylalanyl-tRNA synthetasoef yeastis encoded by protein synthesis dueto an absenceof phenylalanyl-tRNA

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Summary

RESULTS

Chargedthe lattertwo tRNAs as well as wild type but was markedlydeficient in chargingmitochondrialtRNAPheT. he Propertiesof msfl Mutants-Approximately 2000 inde- strain carrying a disrupted m s f l allele (MSFl::HZS., see pendentrespiratorydeficientmutantsisolatedin our labora- below) wascompletelyineffectivein chargingmitochondrial tory havebeengroupedby geneticanalysisinto 207 comple- tRNAPhe, charging of mitochondrial tRNAT* or mentation groups.Complementationgroup GI20contains cytoplasmictRNAPhewas unaffected.Thesedata suggested four mutantsdesignatedC303, C233, E255a,ndN126 Strain W303VMSF1 containing the disruptedallele MSFI::HZS3 (seetext) is completely unabtloe charge mitochondrial tRNAPhew,hereasthemsfl-1strainC303exhibitsonly a traceof the wild type charging activity. Both strainsshowthe same abilityto charge mitochondrial tRNATv tahnedputative cytoplasmtiRcNAPhe "+"*+"J t-l " t L j. Isolation of MSFl-The wild typegene capabloef comple- and approximaetextentsof thesequences obtained are indicbayted menting msfl-1was selectedby transformationof C303/L2 the arrows.The openbox indicatesthe locationof the open reading with a library of wild type yeast nuclear DNA inserted intoframe proposetdo code fortheMSFl gene product. This reading frame contains all the restricdtieolinm-sites. 1 containeda 2.2-kb yeast DNA fragment boundedby Sac iting theregion requiredfor transformationof msfl mutants and KpnI site(spG120/ST10). 5 c r I!rGluI.ell l l e Vn1 :er CIII V,>1 P&P Asn Lys 1.~9 IIPSer Ser ?bt lleLy sA s nL y sA l aA s nA s nT h r

A T r AAG APT AAA GCG AAATAT ACA
F H Q MEG L I V
Findings
DISCUSSION
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