首页> 外文期刊>Nucleic Acids Research >Termination of translation in eukaryotes is mediated by the quaternary eRF1 center dot eRF3 center dot GTP center dot Mg2+ complex. The biological roles of eRF3 and prokaryotic RF3 are profoundly distinct
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Termination of translation in eukaryotes is mediated by the quaternary eRF1 center dot eRF3 center dot GTP center dot Mg2+ complex. The biological roles of eRF3 and prokaryotic RF3 are profoundly distinct

机译:真核生物翻译的终止是由四价eRF1中心点eRF3中心点GTP中心点Mg2 +复合体介导的。 eRF3和原核RF3的生物学作用截然不同

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GTP hydrolysis catalyzed in the ribosome by a complex of two polypeptide release factors, eRF1 and eRF3, is required for fast and efficient termination of translation in eukaryotes. Here, isothermal titration calorimetry is used for the quantitative thermodynamic characterization of eRF3 interactions with guanine nucleotides, eRF1 and Mg2+. We show that (i) eRF3 binds GDP (K-d = 1.9 mu M) and this interaction depends only minimally on the Mg2+ concentration; (ii) GTP binds to eRF3 (K-d = 0.5 mu M) only in the presence of eRF1 and this interaction depends on the Mg2+ concentration; (iii) GTP displaces GDP from the eRF1 center dot eRF3 center dot GDP complex, and vice versa; (iv) eRF3 in the GDP-bound form improves its ability to bind eRF1; (v) the eRF1 center dot eRF3 complex binds GDP as efficiently as free eRF3; (vi) the eRF1 center dot eRF3 complex is efficiently formed in the absence of GDP/GTP but requires the presence of the C-terminus of eRF1 for complex formation. Our results show that eRF1 mediates GDP/GTP displacement on eRF3. We suggest that after formation of eRF1 center dot eRF3 center dot GTP center dot Mg2+, this quaternary complex binds to the ribosomal pretermination complex containing P-site-bound peptidyl-tRNA and the A-site-bound stop codon. The guanine nucleotide binding properties of eRF3 and of the eRF3 center dot eRF1 complex profoundly differ from those of prokaryotic RF3.
机译:需要快速有效地终止真核生物中的翻译,这是由两个多肽释放因子eRF1和eRF3的复合体在核糖体中催化的GTP水解。在这里,等温滴定量热法用于定量定量分析eRF3与鸟嘌呤核苷酸eRF1和Mg2 +相互作用的热力学特性。我们证明(i)eRF3结合GDP(K-d = 1.9μM),并且这种相互作用仅在最小程度上取决于Mg2 +的浓度; (ii)GTP仅在存在eRF1的情况下才与eRF3结合(K-d = 0.5μM),并且这种相互作用取决于Mg2 +的浓度; (iii)GTP将GDP从eRF1中心点eRF3中心点GDP复合体中置换出来,反之亦然; (iv)以GDP约束的形式的eRF3增强了其结合eRF1的能力; (v)eRF1中心点eRF3复合体与GDP的结合与自由eRF3一样有效; (vi)在没有GDP / GTP的情况下有效地形成了eRF1中心点eRF3复合物,但是需要eRF1的C末端存在才能形成复合物。我们的结果表明,eRF1介导了eRF3上的GDP / GTP位移。我们建议在形成eRF1中心点eRF3中心点GTP中心点Mg2 +之后,该四元复合物与包含P-位点结合的肽基-tRNA和A-位点结合的终止密码子的核糖体终止复合物结合。 eRF3和eRF3中心点eRF1复合体的鸟嘌呤核苷酸结合特性与原核RF3的差异很大。

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