通过ZO1表面凝聚和局部肌动蛋白聚合组装紧密连接带

IF 10.7 1区 生物学 Q1 CELL BIOLOGY Developmental cell Pub Date : 2024-12-31 DOI:10.1016/j.devcel.2024.12.012
Daxiao Sun, Xueping Zhao, Tina Wiegand, Cecilie Martin-Lemaitre, Tom Borianne, Lennart Kleinschmidt, Stephan W. Grill, Anthony A. Hyman, Christoph Weber, Alf Honigmann
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引用次数: 0

摘要

紧密连接在密封组织中发挥重要作用,通过在细胞周围形成粘附链带。最近的研究表明,ZO1支架蛋白的冷凝是紧密连接组装所必需的。然而,连接凝聚在细胞-细胞接触处开始并围绕细胞周长的机制仍不清楚。结合MDCKII组织的生化重构和活细胞成像,我们发现紧密连接带的形成是由粘附受体介导的ZO1表面凝聚和局部肌动蛋白聚合驱动的。粘附受体寡聚化为表面结合和ZO1在细胞膜上的局部缩聚提供了信号。冷凝产生一种分子支架,选择性地丰富连接蛋白。最后,ZO1冷凝物直接促进局部肌动蛋白聚合和丝束,带动延伸形成连续的紧密连接带。更广泛地说,我们的工作确定了细胞如何将表面凝聚与细胞骨架组织结合起来组装和结构粘附复合物。
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Assembly of tight junction belts by ZO1 surface condensation and local actin polymerization
Tight junctions play an essential role in sealing tissues, by forming belts of adhesion strands around cellular perimeters. Recent work has shown that the condensation of ZO1 scaffold proteins is required for tight junction assembly. However, the mechanisms by which junctional condensates initiate at cell-cell contacts and elongate around cell perimeters remain unknown. Combining biochemical reconstitutions and live-cell imaging of MDCKII tissue, we found that tight junction belt formation is driven by adhesion receptor-mediated ZO1 surface condensation coupled to local actin polymerization. Adhesion receptor oligomerization provides the signal for surface binding and local condensation of ZO1 at the cell membrane. Condensation produces a molecular scaffold that selectively enriches junctional proteins. Finally, ZO1 condensates directly facilitate local actin polymerization and filament bundling, driving the elongation into a continuous tight junction belt. More broadly, our work identifies how cells couple surface condensation with cytoskeleton organization to assemble and structure adhesion complexes.
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来源期刊
Developmental cell
Developmental cell 生物-发育生物学
CiteScore
18.90
自引率
1.70%
发文量
203
审稿时长
3-6 weeks
期刊介绍: Developmental Cell, established in 2001, is a comprehensive journal that explores a wide range of topics in cell and developmental biology. Our publication encompasses work across various disciplines within biology, with a particular emphasis on investigating the intersections between cell biology, developmental biology, and other related fields. Our primary objective is to present research conducted through a cell biological perspective, addressing the essential mechanisms governing cell function, cellular interactions, and responses to the environment. Moreover, we focus on understanding the collective behavior of cells, culminating in the formation of tissues, organs, and whole organisms, while also investigating the consequences of any malfunctions in these intricate processes.
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