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HIV-1蛋白酶折叠稳定性的演变

The evolution of the HIV-1 protease folding stability.

作者信息

Ferreiro David, Khalil Ruqaiya, Gallego María J, Osorio Nuno S, Arenas Miguel

机构信息

CINBIO, Universidade de Vigo, Vigo 36310, Spain.

Departamento de Bioquímica, Genética e Inmunología, Universidade de Vigo, Vigo 36310, Spain.

出版信息

Virus Evol. 2022 Dec 5;8(2):veac115. doi: 10.1093/ve/veac115. eCollection 2022.

Abstract

The evolution of structural proteins is generally constrained by the folding stability. However, little is known about the particular capacity of viral proteins to accommodate mutations that can potentially affect the protein stability and, in general, the evolution of the protein stability over time. As an illustrative model case, here, we investigated the evolution of the stability of the human immunodeficiency virus (HIV-1) protease (PR), which is a common HIV-1 drug target, under diverse evolutionary scenarios that include (1) intra-host virus evolution in a cohort of seventy-five patients sampled over time, (2) intra-host virus evolution sampled before and after specific PR-based treatments, and (3) inter-host evolution considering extant and ancestral (reconstructed) PR sequences from diverse HIV-1 subtypes. We also investigated the specific influence of currently known HIV-1 PR resistance mutations on the PR folding stability. We found that the HIV-1 PR stability fluctuated over time within a constant and wide range in any studied evolutionary scenario, accommodating multiple mutations that partially affected the stability while maintaining activity. We did not identify relationships between change of PR stability and diverse clinical parameters such as viral load, CD4 T-cell counts, and a surrogate of time from infection. Counterintuitively, we predicted that nearly half of the studied HIV-1 PR resistance mutations do not significantly decrease stability, which, together with compensatory mutations, would allow the protein to adapt without requiring dramatic stability changes. We conclude that the HIV-1 PR presents a wide structural plasticity to acquire molecular adaptations without affecting the overall evolution of stability.

摘要

结构蛋白的进化通常受到折叠稳定性的限制。然而,对于病毒蛋白容纳可能影响蛋白质稳定性的突变的特定能力,以及一般而言蛋白质稳定性随时间的进化,我们知之甚少。作为一个说明性的模型案例,在此我们研究了人类免疫缺陷病毒1型(HIV-1)蛋白酶(PR)的稳定性进化情况,该蛋白酶是常见的HIV-1药物靶点,研究采用了多种进化场景,包括:(1)在75名患者队列中随时间采样的宿主内病毒进化;(2)在基于PR的特定治疗前后采样的宿主内病毒进化;(3)考虑来自不同HIV-1亚型的现存和祖先(重建)PR序列的宿主间进化。我们还研究了目前已知的HIV-1 PR耐药性突变对PR折叠稳定性的具体影响。我们发现,在任何研究的进化场景中,HIV-1 PR的稳定性都会在一个恒定且宽泛的范围内随时间波动,能容纳多个部分影响稳定性但仍保持活性的突变。我们未发现PR稳定性变化与多种临床参数之间的关系,如病毒载量、CD4 T细胞计数以及感染后的时间替代指标。与直觉相反,我们预测近一半研究的HIV-1 PR耐药性突变不会显著降低稳定性,这与补偿性突变一起,将使蛋白质能够在不要求稳定性发生巨大变化的情况下进行适应。我们得出结论,HIV-1 PR具有广泛的结构可塑性,能够在不影响稳定性总体进化的情况下获得分子适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5723/9802575/53f1912bb065/veac115f1.jpg

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