自然选择引导脊椎动物病毒传感器的分子进化。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-02-06 DOI:10.1016/j.dci.2024.105147
Balraj Melepat, Tao Li, Michal Vinkler
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引用次数: 0

摘要

病原体引起的疾病有助于宿主免疫的分子适应。对动物免疫力构成挑战的各种病毒病原体会推动正向选择,使识别感染的受体多样化。然而,不同动物的病毒感染系统在进化模式上是否存在差异仍不清楚。我们的综述对影响脊椎动物病毒结合模式识别受体(PRR)分子进化的自然选择进行了比较概述。尽管功能限制导致了普遍的负选择,但现在有多种证据表明,在 Toll 样受体(TLRs)、NOD 样受体(NLRs)、RIG-I 样受体(RLRs)和寡腺苷酸合成酶(OAS)中存在着多样化选择。在几种情况下,配体结合区域中的正选位点的位置表明其对病毒检测有影响,尽管缺乏实验支持。遗憾的是,在大多数其他 PRR 家族(包括 AIM2 样受体家族、C 型凝集素受体(CLR)和环 GMP-AMP 合成酶)中,对其分子进化特征的研究并不多见,因此无法进行比较研究。我们指出了病毒传感器进化的共同特征,并强调了未来研究的重点。
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Natural selection directing molecular evolution in vertebrate viral sensors

Diseases caused by pathogens contribute to molecular adaptations in host immunity. Variety of viral pathogens challenging animal immunity can drive positive selection diversifying receptors recognising the infections. However, whether distinct virus sensing systems differ across animals in their evolutionary modes remains unclear. Our review provides a comparative overview of natural selection shaping molecular evolution in vertebrate viral-binding pattern recognition receptors (PRRs). Despite prevailing negative selection arising from the functional constraints, multiple lines of evidence now suggest diversifying selection in the Toll-like receptors (TLRs), NOD-like receptors (NLRs), RIG-I-like receptors (RLRs) and oligoadenylate synthetases (OASs). In several cases, location of the positively selected sites in the ligand-binding regions suggests effects on viral detection although experimental support is lacking. Unfortunately, in most other PRR families including the AIM2-like receptor family, C-type lectin receptors (CLRs), and cyclic GMP-AMP synthetase studies characterising their molecular evolution are rare, preventing comparative insight. We indicate shared characteristics of the viral sensor evolution and highlight priorities for future research.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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