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选择改变了与热休克蛋白90相互作用的遗传变异格局。

Selection Transforms the Landscape of Genetic Variation Interacting with Hsp90.

作者信息

Geiler-Samerotte Kerry A, Zhu Yuan O, Goulet Benjamin E, Hall David W, Siegal Mark L

机构信息

Center for Genomics and Systems Biology, Department of Biology, New York University, New York, New York, United States of America.

Department of Biology, Stanford University, Stanford, California, United States of America.

出版信息

PLoS Biol. 2016 Oct 21;14(10):e2000465. doi: 10.1371/journal.pbio.2000465. eCollection 2016 Oct.

Abstract

The protein-folding chaperone Hsp90 has been proposed to buffer the phenotypic effects of mutations. The potential for Hsp90 and other putative buffers to increase robustness to mutation has had major impact on disease models, quantitative genetics, and evolutionary theory. But Hsp90 sometimes contradicts expectations for a buffer by potentiating rapid phenotypic changes that would otherwise not occur. Here, we quantify Hsp90's ability to buffer or potentiate (i.e., diminish or enhance) the effects of genetic variation on single-cell morphological features in budding yeast. We corroborate reports that Hsp90 tends to buffer the effects of standing genetic variation in natural populations. However, we demonstrate that Hsp90 tends to have the opposite effect on genetic variation that has experienced reduced selection pressure. Specifically, Hsp90 tends to enhance, rather than diminish, the effects of spontaneous mutations and recombinations. This result implies that Hsp90 does not make phenotypes more robust to the effects of genetic perturbation. Instead, natural selection preferentially allows buffered alleles to persist and thereby creates the false impression that Hsp90 confers greater robustness.

摘要

蛋白质折叠伴侣Hsp90被认为可以缓冲突变的表型效应。Hsp90和其他假定的缓冲因子增强对突变的稳健性的可能性,已对疾病模型、数量遗传学和进化理论产生了重大影响。但Hsp90有时会通过增强原本不会发生的快速表型变化,与对缓冲因子的预期相矛盾。在这里,我们量化了Hsp90缓冲或增强(即减弱或增强)遗传变异对芽殖酵母单细胞形态特征影响的能力。我们证实了有关Hsp90倾向于缓冲自然种群中现存遗传变异影响的报道。然而,我们证明,Hsp90对经历了降低的选择压力的遗传变异往往有相反的影响。具体而言,Hsp90倾向于增强而非减弱自发突变和重组的影响。这一结果意味着Hsp90不会使表型对遗传扰动的影响更具稳健性。相反,自然选择优先允许被缓冲的等位基因持续存在,从而造成Hsp90赋予更大稳健性的错误印象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7aab/5074785/cb9a8d5be9a4/pbio.2000465.g001.jpg

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