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首页> 外文期刊>Nature chemical biology >Chemical chaperones assist intracellular folding to buffer mutational variations
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Chemical chaperones assist intracellular folding to buffer mutational variations

机译:化学分子伴侣协助细胞内折叠以缓冲突变

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摘要

Hidden genetic variations have the potential to lead to the evolution of new traits. Molecular chaperones, which assist protein folding, may conceal genetic variations in protein-coding regions. Here we investigate whether the chemical milieu of cells has the potential to alleviate intracellular protein folding, a possibility that could implicate osmolytes in concealing genetic variations. We found that the model osmolyte trimethylamine N-oxide (TMAO) can buffer mutations that impose kinetic traps in the folding pathways of two model proteins. Using this information, we rationally designed TMAO-dependent mutants in vivo, starting from a TMAO-independent protein. We show that different osmolytes buffer a unique spectrum of mutations. Consequently, the chemical milieu of cells may alter the folding pathways of unique mutant variants in polymorphic populations and lead to unanticipated spectra of genetic buffering.
机译:隐藏的遗传变异有可能导致新性状的进化。协助蛋白质折叠的分子伴侣可能隐藏蛋白质编码区域的遗传变异。在这里,我们研究了细胞的化学环境是否具有减轻细胞内蛋白质折叠的潜力,这种可能性可能暗示渗透压物掩盖了遗传变异。我们发现模型渗透压三甲胺N-氧化物(TMAO)可以缓冲突变,该突变在两个模型蛋白的折叠途径中强加了动态陷阱。利用这些信息,我们从不依赖TMAO的蛋白质出发,合理地设计了体内依赖TMAO的突变体。我们表明,不同的渗透压缓冲剂独特的突变谱。因此,细胞的化学环境可能会改变多态群体中独特突变体变体的折叠途径,并导致基因缓冲的意外光谱。

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