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黏蛋白网络:控制黏液功能的动态结构组件。

Mucin networks: Dynamic structural assemblies controlling mucus function.

作者信息

Fass Deborah, Thornton David J

机构信息

Department of Chemical and Structural Biology, Weizmann Institute of Science, Rehovot 7610001, Israel.

Wellcome Centre for Cell-Matrix Research and the Lydia Becker Institute of Immunology and Inflammation, Faculty of Biology, Medicine and Health, University of Manchester, Manchester, UK.

出版信息

Curr Opin Struct Biol. 2023 Apr;79:102524. doi: 10.1016/j.sbi.2022.102524. Epub 2023 Feb 6.

Abstract

Contrary to first appearances, mucus structural biology is not an oxymoron. Though mucus hydrogels derive their characteristics largely from intrinsically disordered, heavily glycosylated polypeptide segments, the secreted mucin glycoproteins that constitute mucus undergo an orderly assembly process controlled by folded domains at their termini. Recent structural studies revealed how mucin complexes promote disulphide-mediated polymerization to produce the mucus gel scaffold. Additional protein-protein and protein-glycan interactions likely tune the mesoscale properties, stability, and activities of mucins. Evidence is emerging that even intrinsically disordered glycosylated segments have specific structural roles in the production and properties of mucus. Though soft-matter biophysical approaches to understanding mucus remain highly relevant, high-resolution structural studies of mucins and other mucus components are providing new perspectives on these vital, protective hydrogels.

摘要

与乍看之下的情况相反,黏液结构生物学并非自相矛盾的概念。尽管黏液水凝胶的特性很大程度上源于内在无序、高度糖基化的多肽片段,但构成黏液的分泌型黏蛋白糖蛋白会经历一个由其末端折叠结构域控制的有序组装过程。最近的结构研究揭示了黏蛋白复合物如何促进二硫键介导的聚合反应以产生黏液凝胶支架。其他蛋白质-蛋白质和蛋白质-聚糖相互作用可能会调节黏蛋白的中尺度特性、稳定性和活性。越来越多的证据表明,即使是内在无序的糖基化片段在黏液的产生和特性方面也具有特定的结构作用。尽管理解黏液的软物质生物物理方法仍然高度相关,但对黏蛋白和其他黏液成分的高分辨率结构研究正在为这些重要的保护性水凝胶提供新的视角。

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