MUC5AC filaments illuminate the structural diversification of respiratory and intestinal mucins.

IF 9.1 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Meital Haberman, Roman Kamyshinsky, Nava Reznik, Noa Yeshaya, Lev Khmelnitsky, Elizabeth G Plender, Evan E Eichler, Deborah Fass
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引用次数: 0

Abstract

Secreted mucins are multimegadalton glycoprotein polymers that share the function of protecting mucosal tissues but diversified for activities in different organs of the body. Structural studies of secreted mucins are complicated by the enormous sizes, flexibility, and complex supramolecular assembly modes of these glycoproteins. The two major respiratory mucins are MUC5AC and MUC5B. Here, we present structures of a large amino-terminal segment of MUC5AC in the form of helical filaments. These filaments differ from filamentous and tubular structures observed previously for the intestinal mucin MUC2 and the partial mucin homolog VWF. Nevertheless, the MUC5AC helical filaments support the proposed mechanism, based on MUC2 and VWF, for how noncovalent interactions between mucin monomers guide disulfide crosslinking to form polymers. The high-resolution MUC5AC structures show how local and limited changes in amino acid sequence can profoundly affect higher-order assembly while preserving the overall folds and polymerization activity of mucin glycoproteins. Differences in supramolecular assembly are likely to be functionally significant considering the divergence of mechanical properties and physiological requirements between respiratory and intestinal mucins. Determining the high-resolution structures of respiratory mucins provides a foundation for understanding the mechanisms by which they clean and protect the lungs. Moreover, the MUC5AC structure enables visualization of the sites of human amino acid sequence variation and disease-associated mutations.

MUC5AC细丝阐明了呼吸和肠粘蛋白的结构多样化。
分泌的粘蛋白是具有保护粘膜组织功能的多糖类蛋白聚合物,但在身体不同器官中的活动各不相同。分泌黏蛋白的结构研究由于这些糖蛋白的巨大尺寸、灵活性和复杂的超分子组装模式而变得复杂。两种主要的呼吸黏蛋白是MUC5AC和MUC5B。在这里,我们以螺旋丝的形式呈现MUC5AC的一个大氨基末端片段的结构。这些细丝不同于之前在肠黏液蛋白MUC2和部分黏液蛋白同源物VWF中观察到的丝状和管状结构。尽管如此,MUC5AC螺旋细丝支持基于MUC2和VWF提出的机制,即粘蛋白单体之间的非共价相互作用如何引导二硫交联形成聚合物。高分辨率MUC5AC结构表明,氨基酸序列的局部和有限变化如何深刻影响高阶组装,同时保持粘蛋白糖蛋白的整体折叠和聚合活性。考虑到呼吸黏蛋白和肠黏蛋白在机械特性和生理需求上的差异,超分子组装的差异可能在功能上是显著的。确定呼吸黏蛋白的高分辨率结构为理解它们清洁和保护肺部的机制提供了基础。此外,MUC5AC结构可以可视化人类氨基酸序列变异和疾病相关突变的位点。
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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