Functional replacement of hamster lysyl-tRNA synthetase by the yeast enzyme requires cognate amino acid sequences for proper tRNA recognition

被引:19
作者
Agou, F [1 ]
Quevillon, S [1 ]
Kerjan, P [1 ]
Latreille, MT [1 ]
Mirande, M [1 ]
机构
[1] CNRS,LAB ENZYMOL & BIOCHEM STRUCT,UPR 9063,F-91190 GIF SUR YVETTE,FRANCE
关键词
D O I
10.1021/bi9617926
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We cloned the cDNA encoding a 597-aa hamster lysyl-tRNA synthetase. This enzyme is a close homologue of the 591-aa Saccharomyces cerevisiae enzyme, with the noticeable exception of their 60-aa N-terminal regions, which differ significantly. Several particular features of this polypeptide fragment from the hamster lysyl-tRNA synthetase suggest that it is implicated in the assembly of that enzyme within the multisynthetase complex. However, we show that this protein domain is dispensable in vivo to sustain growth of CHO cells. The cross-species complementation was investigated in the lysine system. The mammalian enzyme functionally replaces a null-allele of the yeast KRS1 gene. Conversely, the yeast enzyme cannot rescue Lys-101 cells, a CHO cell line with a temperature-sensitive lysyl-tRNA synthetase. The yeast and mammalian enzymes, overexpressed in yeast, were purified to homogeneity. The hamster lysyl-tRNA synthetase efficiently aminoacylates both mammalian and yeast tRNA(Lys), whereas the yeast enzyme aminoacylates mammalian tRNA(Lys) with a catalytic efficiency 20-fold lower, as compared to its cognate tRNA. The 152-aa C-terminus extremity of the hamster enzyme provides the yeast enzyme with the capacity to complement Lys-101 cells. This hybrid protein is fairly stable and aminoacylates both yeast and mammalian tRNA(Lys) With similar catalytic efficiencies. Because this C-terminal polypeptide fragment is likely to make contacts with the acceptor stem of tRNA(Lys), we conclude that it should carry the protein determinants conferring specific recognition of the cognate tRNA acceptor stem and therefore contributes an essential role in the operational RNA code for amino acids.
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页码:15322 / 15331
页数:10
相关论文
共 40 条
[1]   [AMINO-H-3 ACID SELECTION OF AMINOACYL TRANSFER RNA-SYNTHETASE MUTANTS OF CHO CELLS - EVIDENCE OF HOMOZYGOSITY VS HEMIZYGOSITY AT SPECIFIC LOCI [J].
ADAIR, GM ;
THOMPSON, LH ;
FONG, S .
SOMATIC CELL GENETICS, 1979, 5 (03) :329-344
[2]   Single sequence of a helix-loop peptide confers functional anticodon recognition on two tRNA synthetases [J].
Auld, DS ;
Schimmel, P .
EMBO JOURNAL, 1996, 15 (05) :1142-1148
[3]   SCREENING GAMMAGT RECOMBINANT CLONES BY HYBRIDIZATION TO SINGLE PLAQUES INSITU [J].
BENTON, WD ;
DAVIS, RW .
SCIENCE, 1977, 196 (4286) :180-182
[4]   RECOGNITION OF TRANSFER-RNAS BY AMINOACYL-TRANSFER RNA-SYNTHETASES [J].
CAVARELLI, J ;
MORAS, D .
FASEB JOURNAL, 1993, 7 (01) :79-86
[5]   YEAST TRANSFER RNA(ASP) RECOGNITION BY ITS COGNATE CLASS-II AMINOACYL-TRANSFER RNA-SYNTHETASE [J].
CAVARELLI, J ;
REES, B ;
RUFF, M ;
THIERRY, JC ;
MORAS, D .
NATURE, 1993, 362 (6416) :181-184
[6]   LEUCYL-TRANSFER RNA AND LYSYL-TRANSFER RNA-SYNTHETASES, DERIVED FROM THE HIGH-MR COMPLEX OF SHEEP LIVER, ARE HYDROPHOBIC PROTEINS [J].
CIRAKOGLU, B ;
WALLER, JP .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1985, 151 (01) :101-110
[7]   PARTITION OF TRANSFER-RNA SYNTHETASES INTO 2 CLASSES BASED ON MUTUALLY EXCLUSIVE SETS OF SEQUENCE MOTIFS [J].
ERIANI, G ;
DELARUE, M ;
POCH, O ;
GANGLOFF, J ;
MORAS, D .
NATURE, 1990, 347 (6289) :203-206
[8]   ANALYSIS OF ACCURACY AND IMPLICATIONS OF SIMPLE METHODS FOR PREDICTING SECONDARY STRUCTURE OF GLOBULAR PROTEINS [J].
GARNIER, J ;
OSGUTHORPE, DJ ;
ROBSON, B .
JOURNAL OF MOLECULAR BIOLOGY, 1978, 120 (01) :97-120
[9]   STRUCTURE AND EVOLUTION OF A GROUP OF RELATED AMINOACYL-TRANSFER RNA-SYNTHETASES [J].
GATTI, DL ;
TZAGOLOFF, A .
JOURNAL OF MOLECULAR BIOLOGY, 1991, 218 (03) :557-568
[10]   A VERSATILE INVIVO AND INVITRO EUKARYOTIC EXPRESSION VECTOR FOR PROTEIN ENGINEERING [J].
GREEN, S ;
ISSEMANN, I ;
SHEER, E .
NUCLEIC ACIDS RESEARCH, 1988, 16 (01) :369-369