EUKARYOTIC SELENOCYSTEINE INSERTING TRANSFER-RNA SPECIES SUPPORT SELENOPROTEIN SYNTHESIS IN ESCHERICHIA-COLI

被引:22
作者
BARON, C
STURCHLER, C
WU, XQ
GROSS, HJ
KROL, A
BOCK, A
机构
[1] UNIV MUNICH,LEHRSTUHL MIKROBIOL,D-80638 MUNICH,GERMANY
[2] INST BIOL MOLEC & CELLULAIRE,CNRS,UPR STRUCTURE MACROMOLEC BIOL & MECANISMES RECONN,F-67084 STRASBOURG,FRANCE
[3] UNIV WURZBURG,INST BIOCHEM,D-97074 WURZBURG,GERMANY
关键词
D O I
10.1093/nar/22.12.2228
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
Although the tRNA species directing selenocysteine insertion in prokaryotes differ greatly in their primary structure from that of their eukaryotic homologues they share very similar three-dimensional structures. To analyse whether this conservation of the overall shape of the molecules reflects a conservation of their functional interactions it was tested whether the selenocysteine inserting tRNA species from Homo sapiens supports selenoprotein synthesis in E.coli. It was found that the expression of the human tRNA(Sec) gene in E.coli can complement a lesion in the tRNA(Sec) gene of this organism. Transcripts of the Homo sapiens and Xenopos laevis tRNA(Sec) genes synthesised in vitro were amino-acylated by the E.coli seryl-tRNA ligase although at a very low rate and the resulting seryl-tRNA(Sec) was bound to and converted into selenocysteyl-tRNA(Sec) by the selenocysteine synthase of this organism. Selenocysteyl-tRNA(Sec) from both eukaryotes was able to form a complex with translation factor SELB from E.coli. Although the mechanism of selenocysteine incorporation into seleno-proteins appears to be rather different in E.coli and in vertebrates, we observe here a surprising conservation of functions over an anourmous evolutionary distance.
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页码:2228 / 2233
页数:6
相关论文
共 30 条
  • [1] IDENTITY DETERMINANTS OF HUMAN TRANSFER RNA(SER) - SEQUENCE ELEMENTS NECESSARY FOR SERYLATION AND MATURATION OF A TRANSFER-RNA WITH A LONG EXTRA ARM
    ACHSEL, T
    GROSS, HJ
    [J]. EMBO JOURNAL, 1993, 12 (08) : 3333 - 3338
  • [2] BARON C, 1991, J BIOL CHEM, V266, P20375
  • [3] SOLUTION STRUCTURE OF SELENOCYSTEINE-INSERTING TRANSFER RNA(SEC) FROM ESCHERICHIA-COLI - COMPARISON WITH CANONICAL TRANSFER RNA(SER)
    BARON, C
    WESTHOF, E
    BOCK, A
    GIEGE, R
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 1993, 231 (02) : 274 - 292
  • [4] MUTAGENESIS OF SELC, THE GENE FOR THE SELENOCYSTEINE-INSERTING TRANSFER RNA-SPECIES IN ESCHERICHIA-COLI - EFFECTS ON INVIVO FUNCTION
    BARON, C
    HEIDER, J
    BOCK, A
    [J]. NUCLEIC ACIDS RESEARCH, 1990, 18 (23) : 6761 - 6766
  • [5] INTERACTION OF TRANSLATION FACTOR SELB WITH THE FORMATE DEHYDROGENASE-H SELENOPOLYPEPTIDE MESSENGER-RNA
    BARON, C
    HEIDER, J
    BOCK, A
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (09) : 4181 - 4185
  • [6] FUNCTIONAL-CHARACTERIZATION OF THE EUKARYOTIC SECIS ELEMENTS WHICH DIRECT SELENOCYSTEINE INSERTION AT UGA CODONS
    BERRY, MJ
    BANU, L
    HARNEY, JW
    LARSEN, PR
    [J]. EMBO JOURNAL, 1993, 12 (08) : 3315 - 3322
  • [7] RECOGNITION OF UGA AS A SELENOCYSTEINE CODON IN TYPE-I DEIODINASE REQUIRES SEQUENCES IN THE 3' UNTRANSLATED REGION
    BERRY, MJ
    BANU, L
    CHEN, Y
    MANDEL, SJ
    KIEFFER, JD
    HARNEY, JW
    LARSEN, PR
    [J]. NATURE, 1991, 353 (6341) : 273 - 276
  • [8] SELENOCYSTEINE - THE 21ST AMINO-ACID
    BOCK, A
    FORCHHAMMER, K
    HEIDER, J
    LEINFELDER, W
    SAWERS, G
    VEPREK, B
    ZINONI, F
    [J]. MOLECULAR MICROBIOLOGY, 1991, 5 (03) : 515 - 520
  • [9] CHEN GFT, 1993, J BIOL CHEM, V268, P23128
  • [10] DIAMOND AM, 1993, J BIOL CHEM, V268, P14215