Enhanced ER proteostasis and temperature differentially impact the mutational tolerance of influenza hemagglutinin

增强的内质网蛋白稳态和温度对流感血凝素的突变耐受性具有不同的影响

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作者:Angela M Phillips ,Michael B Doud ,Luna O Gonzalez ,Vincent L Butty ,Yu-Shan Lin ,Jesse D Bloom ,Matthew D Shoulders

Abstract

We systematically and quantitatively evaluate whether endoplasmic reticulum (ER) proteostasis factors impact the mutational tolerance of secretory pathway proteins. We focus on influenza hemaggluttinin (HA), a viral membrane protein that folds in the host's ER via a complex pathway. By integrating chemical methods to modulate ER proteostasis with deep mutational scanning to assess mutational tolerance, we discover that upregulation of ER proteostasis factors broadly enhances HA mutational tolerance across diverse structural elements. Remarkably, this proteostasis network-enhanced mutational tolerance occurs at the same sites where mutational tolerance is most reduced by propagation at fever-like temperature. These findings have important implications for influenza evolution, because influenza immune escape is contingent on HA possessing sufficient mutational tolerance to evade antibodies while maintaining the capacity to fold and function. More broadly, this work provides the first experimental evidence that ER proteostasis mechanisms define the mutational tolerance and, therefore, the evolution of secretory pathway proteins. Keywords: biochemistry; chemical biology; evolution; evolutionary biology; human; influenza; membrane protein; protein folding; proteostasis; unfolded protein response; virus.

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