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首页> 外文期刊>Journal of Molecular Biology >Fast Folding of the Two-domain Semliki Forest Virus Capsid Protein Explains Co-translational Proteolytic Activity.
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Fast Folding of the Two-domain Semliki Forest Virus Capsid Protein Explains Co-translational Proteolytic Activity.

机译:两域Semliki森林病毒衣壳蛋白的快速折叠说明了共翻译蛋白水解活性。

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摘要

The capsid protein of Semliki Forest virus constitutes the N-terminal part of a large viral polyprotein. It consists of an unstructured basic segment (residues 1-118) and a 149 residue serine protease module (SFVP, residues 119-267) comprised of two beta-barrel domains. Previous in vivo and in vitro translation experiments have demonstrated that SFVP folds co-translationally during synthesis of the viral polyprotein and rapidly cleaves itself off the nascent chain. To test whether fast co-translation folding of SFVP is an intrinsic property of the polypeptide chain or whether folding is accelerated by cellular components, we investigated spontaneous folding of recombinant SFVP in vitro. The results show that the majority of unfolded SFVP molecules fold faster than any previously studied two-domain protein (tau=50 ms), and that folding of the N-terminal domain precedes structure formation of the C-terminal domain. This shows that co-translational folding of SFVP does not require additional cellular components and suggests that rapid folding is the result of molecular evolution towards efficient virus biogenesis.
机译:Semliki Forest病毒的衣壳蛋白构成大型病毒多蛋白的N端部分。它由一个非结构化的基本区段(残基1-118)和一个149个残基的丝氨酸蛋白酶模块(SFVP,残基119-267)组成,由两个β-桶结构域组成。先前的体内和体外翻译实验已经证明,SFVP在病毒多蛋白合成过程中会进行共翻译折叠,并迅速从新生链上裂解下来。为了测试SFVP的快速共翻译折叠是多肽链的固有特性还是细胞组件加速折叠,我们在体外研究了重组SFVP的自发折叠。结果表明,大多数未折叠的SFVP分子的折叠速度快于以前研究的任何两个结构域蛋白(tau = 50 ms),并且N末端结构域的折叠先于C末端结构域的结构形成。这表明SFVP的共翻译折叠不需要其他细胞成分,并且表明快速折叠是分子向高效病毒生物发生进化的结果。

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