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冷冻电镜揭示的释放因子RF1与核糖体的相互作用。

Interactions of the release factor RF1 with the ribosome as revealed by cryo-EM.

作者信息

Rawat Urmila, Gao Haixiao, Zavialov Andrey, Gursky Richard, Ehrenberg Måns, Frank Joachim

机构信息

Howard Hughes Medical Institute, University of Michigan School of Medicine, 1150 West Medical Ctr. Drive, Ann Arbor, MI 48109, USA.

出版信息

J Mol Biol. 2006 Apr 7;357(4):1144-53. doi: 10.1016/j.jmb.2006.01.038. Epub 2006 Jan 30.

Abstract

In eubacteria, termination of translation is signaled by any one of the stop codons UAA, UAG, and UGA moving into the ribosomal A site. Two release factors, RF1 and RF2, recognize and bind to the stop codons with different affinities and trigger the hydrolysis of the ester bond that links the polypeptide with the P-site tRNA. Cryo-electron microscopy (cryo-EM) results obtained in this study show that ribosome-bound RF1 is in an open conformation, unlike the closed conformation observed in the crystal structure of the free factor, allowing its simultaneous access to both the decoding center and the peptidyl-transferase center. These results are similar to those obtained for RF2, but there is an important difference in how the factors bind to protein L11, which forms part of the GTPase-associated center of the large ribosomal subunit. The difference in the binding position, C-terminal domain for RF2 versus N-terminal domain for RF1, explains a body of L11 mutation studies that revealed differential effects on the activity of the two factors. Very recent data obtained with small-angle X-ray scattering now reveal that the solution structure of RF1 is open, as here seen on the ribosome by cryo-EM, and not closed, as seen in the crystal.

摘要

在真细菌中,翻译终止由终止密码子UAA、UAG和UGA中的任何一个进入核糖体A位点发出信号。两种释放因子RF1和RF2以不同亲和力识别并结合终止密码子,并触发连接多肽与P位点tRNA的酯键水解。本研究获得的冷冻电镜(cryo-EM)结果表明,核糖体结合的RF1处于开放构象,这与在游离因子晶体结构中观察到的封闭构象不同,从而使其能够同时进入解码中心和肽基转移酶中心。这些结果与RF2的结果相似,但在这些因子与构成大核糖体亚基GTP酶相关中心一部分的蛋白质L11的结合方式上存在重要差异。结合位置的差异,即RF2为C末端结构域而RF1为N末端结构域,解释了一系列L11突变研究的结果,这些研究揭示了对这两种因子活性的不同影响。最近通过小角X射线散射获得的数据现在表明,RF1的溶液结构是开放的,正如这里通过冷冻电镜在核糖体上看到的那样,而不是像在晶体中看到的那样是封闭的。

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