论文标题

SARS-COV-2使用的细胞进入系统中的短线性主题候选及其潜在的治疗含义

Short linear motif candidates in the cell entry system used by SARS-CoV-2 and their potential therapeutic implications

论文作者

Mészáros, Bálint, Sámano-Sánchez, Hugo, Alvarado-Valverde, Jesús, Čalyševa, Jelena, Martínez-Pérez, Elizabeth, Alves, Renato, Kumar, Manjeet, Rippmann, Friedrich, Chemes, Lucía B., Gibson, Toby J., .

论文摘要

SARS-COV-2的主要细胞表面受体是血管紧张素转换酶2(ACE2)。最近,人们注意到病毒尖峰蛋白具有RGD基序,这表明细胞表面整合素可能是共受体。我们使用真核线性线性基序资源ELM检查了ACE2和整合素的序列,并在其短的,非结构化的胞质尾巴中呈现了候选短线性基序(Slim),在内吞作用,膜动力学,自噬,自噬,细胞骨架和细胞骨架和细胞信号中具有潜在作用。这些苗条的候选者在脊椎动物中是高度保守的。他们建议与AP2 MU2亚基以及I-BAR,LC3,PDZ,PTB和SH2结构域的潜在相互作用,在上皮肺细胞中存在的信号传导和调节蛋白中发现。几个基序在尾序中重叠,表明它们可以充当分子开关,通常涉及酪氨酸磷酸化状态。候选LIR基序存在于ACE2和整联蛋白β3的尾部中,这表明这些蛋白质可以直接募集自噬成分。我们还注意到,ACE2的细胞外部分具有保守的MIDAS结构基序,Beta整联蛋白通常用于配体结合,可能支持整联蛋白和ACE2共同配体的建议。此处介绍的发现确定了几个分子联系和可检验的假设,这些假设可能有助于发现SARS-COV-2附着,进入和复制的机制,并加强有可能开发宿主指导的疗法来抑制病毒进入效率和障碍性疾病进展的可能性。强烈的序列保护意味着这些推定的纤细是良好的候选者:然而,必须始终通过实验验证纤细的候选者,然后才能说明它们具有功能。

The primary cell surface receptor for SARS-CoV-2 is the angiotensin-converting enzyme 2 (ACE2). Recently it has been noticed that the viral Spike protein has an RGD motif, suggesting that cell surface integrins may be co-receptors. We examined the sequences of ACE2 and integrins with the Eukaryotic Linear Motif resource, ELM, and were presented with candidate short linear motifs (SLiMs) in their short, unstructured, cytosolic tails with potential roles in endocytosis, membrane dynamics, autophagy, cytoskeleton and cell signalling. These SLiM candidates are highly conserved in vertebrates. They suggest potential interactions with the AP2 mu2 subunit as well as I-BAR, LC3, PDZ, PTB and SH2 domains found in signalling and regulatory proteins present in epithelial lung cells. Several motifs overlap in the tail sequences, suggesting that they may act as molecular switches, often involving tyrosine phosphorylation status. Candidate LIR motifs are present in the tails of ACE2 and integrin beta3, suggesting that these proteins can directly recruit autophagy components. We also noticed that the extracellular part of ACE2 has a conserved MIDAS structural motif, which are commonly used by beta integrins for ligand binding, potentially supporting the proposal that integrins and ACE2 share common ligands. The findings presented here identify several molecular links and testable hypotheses that might help uncover the mechanisms of SARS-CoV-2 attachment, entry and replication, and strengthen the possibility that it might be possible to develop host-directed therapies to dampen the efficiency of viral entry and hamper disease progression. The strong sequence conservation means that these putative SLiMs are good candidates: Nevertheless, SLiMs must always be validated by experimentation before they can be stated to be functional.

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