The C domain of translation termination factor eRF1 is close to the stop codon in the A site of the 80S ribosome

被引:0
|
作者
K. N. Bulygin
E. A. Popugaeva
M. N. Repkova
M. I. Meschaninova
A. G. Ven’yaminova
D. M. Graifer
L. Yu. Frolova
G. G. Karpova
机构
[1] Russian Academy of Sciences,Institute of Chemical Biology and Fundamental Medicine, Siberian Division
[2] Russian Academy of Sciences,Engelhardt Institute of Molecular Biology
来源
Molecular Biology | 2007年 / 41卷
关键词
eukaryotes; translation termination; stop codon recognition; ribosome; translation termination factor; photocrosslinking;
D O I
暂无
中图分类号
学科分类号
摘要
The arrangement of the stop codon and its 3′-flanking codon relative to the components of translation termination complexes of human 80S ribosomes was studied using mRNA analogs containing the stop signal UPuPuPu (Pu is A or G) and the photoreactive perfluoroarylazido group, which was linked to a stop-signal or 3′-flanking nucleotide (positions from +4 to +9 relative to the first nucleotide of the P-site codon). Upon mild UV irradiation, the analogs crosslinked to components of the model complexes, mimicking the state of the 80S ribosome at translation termination. Termination factors eRF1 and eRF3 did not change the relative arrangement of the stop signal and 18S rRNA. Crosslinking to eRF1 was observed for modified nucleotides in positions +5 to +9 (that for stop-codon nucleotide +4 was detected earlier). The eRF1 fragments crosslinked to the mRNA analogs were identified. Fragment 52–195, including the N domain and part of the M domain, crosslinked to the analogs carrying the reactive group at A or G in positions +5 to +9 or at the terminal phosphate of nucleotide +7. The site crosslinking to mRNA analogs containing modified G in positions +5 to +7 was assigned to eRF1 fragment 82–166 (beyond the NIKS motif). All but one analog (that with modified G in position +4) crosslinked to the C domain of eRF1 (fragment 330–422). The efficiency of crosslinking to the C domain was higher than to the N domain in most cases. It was assumed that the C domain of eRF1 bound in the A site is close to nucleotides +5 to +9, especially +7 and +8, and that eRF1 undergoes substantial conformational changes when binding to the ribosome.
引用
收藏
页码:781 / 789
页数:8
相关论文
共 50 条
  • [11] Boric acid intercepts 80S ribosome migration from AUG-stop by stabilizing eRF1
    Mayuki Tanaka
    Takeshi Yokoyama
    Hironori Saito
    Madoka Nishimoto
    Kengo Tsuda
    Naoyuki Sotta
    Hideki Shigematsu
    Mikako Shirouzu
    Shintaro Iwasaki
    Takuhiro Ito
    Toru Fujiwara
    [J]. Nature Chemical Biology, 2024, 20 : 605 - 614
  • [12] Selectivity of stop codon recognition in translation termination is modulated by multiple conformations of GTS loop in eRF1
    Wong, Leo E.
    Li, Yan
    Pillay, Shubhadra
    Frolova, Ludmila
    Pervushin, Konstantin
    [J]. NUCLEIC ACIDS RESEARCH, 2012, 40 (12) : 5751 - 5765
  • [13] A single amino acid change of translation termination factor eRF1 switches between bipotent and omnipotent stop-codon specificity
    Eliseev, Boris
    Kryuchkova, Polina
    Alkalaeva, Elena
    Frolova, Ludmila
    [J]. NUCLEIC ACIDS RESEARCH, 2011, 39 (02) : 599 - 608
  • [14] Exploring contacts of eRF1 with the 3′-terminus of the P site tRNA and mRNA stop signal in the human ribosome at various translation termination steps
    Bulygin, Konstantin N.
    Graifer, Dmitri M.
    Hountondji, Codjo
    Frolova, Ludmila Yu.
    Karpova, Galina G.
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-GENE REGULATORY MECHANISMS, 2017, 1860 (07): : 782 - 793
  • [15] Translation termination factor eRF1 of the ciliate Blepharisma japonicum recognizes all three stop codons
    B. D. Eliseev
    E. Z. Alkalaeva
    P. N. Kryuchkova
    S. A. Lekomtsev
    Wei Wang
    Ai-Hua Liang
    L. Yu. Frolova
    [J]. Molecular Biology, 2011, 45 : 614 - 618
  • [16] Convergence and constraint in eukaryotic release factor 1 (eRF1) domain 1: the evolution of stop codon specificity
    Inagaki, Y
    Blouin, C
    Doolittle, WF
    Roger, AJ
    [J]. NUCLEIC ACIDS RESEARCH, 2002, 30 (02) : 532 - 544
  • [17] Translation termination factor eRF1 of the ciliate Blepharisma japonicum recognizes all three stop codons
    Eliseev, B. D.
    Alkalaeva, E. Z.
    Kryuchkova, P. N.
    Lekomtsev, S. A.
    Wang, Wei
    Liang, Ai-Hua
    Frolova, L. Yu
    [J]. MOLECULAR BIOLOGY, 2011, 45 (04) : 614 - 618
  • [18] Interface of the interaction of the middle domain of human translation termination factor eRF1 with eukaryotic ribosomes
    E. V. Ivanova
    E. Z. Alkalaeva
    B. Birdsall
    P. M. Kolosov
    V. I. Polshakov
    L. L. Kisselev
    [J]. Molecular Biology, 2008, 42 : 939 - 948
  • [19] Interface of the interaction of the middle domain of human translation termination factor eRF1 with eukaryotic ribosomes
    Ivanova, E. V.
    Alkalaeva, E. Z.
    Birdsall, B.
    Kolosov, P. M.
    Polshakov, V. I.
    Kisselev, L. L.
    [J]. MOLECULAR BIOLOGY, 2008, 42 (06) : 939 - 948
  • [20] Influence of individual domains of the translation termination factor eRF1 on induction of the GTPase activity of the translation termination factor eRF3
    Dubovaya, VI
    Kolosov, PM
    Alkalaeva, EZ
    Frolova, LY
    Kisselev, LL
    [J]. MOLECULAR BIOLOGY, 2006, 40 (02) : 310 - 316