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非肌肉肌球蛋白-2B调节MDCK上皮细胞的顶端皮质力学、紧密连接蛋白1(ZO-1)动力学和细胞大小。

Nonmuscle Myosin-2B Regulates Apical Cortical Mechanics, ZO-1 Dynamics and Cell Size in MDCK Epithelial Cells.

作者信息

Maupérin Marine, Klatt Niklas, Glandorf Thomas, Di Mattia Thomas, Méan Isabelle, Janshoff Andreas, Citi Sandra

机构信息

Department of Molecular and Cellular Biology, University of Geneva, 1205 Geneva, Switzerland.

Institute for Physical Chemistry, Georg-August Universität, 37077 Göttingen, Germany.

出版信息

Cells. 2025 Jul 23;14(15):1138. doi: 10.3390/cells14151138.

Abstract

In epithelial cells, nonmuscle myosin-2B (NM2B) shows a cortical localization and is tethered to tight junctions (TJs) and adherens junctions (AJs) by the junctional adaptor proteins cingulin and paracingulin. MDCK cells knock-out (KO) for cingulin show decreased apical membrane cortex stiffness and decreased TJ membrane tortuosity, and the rescue of these phenotypes requires the myosin-binding region of cingulin. Here, we investigated whether NM2B contributes to these phenotypes independently of cingulin by generating and characterizing clonal lines of MDCK cells KO for NM2B. The loss of NM2B resulted in decreased stiffness and increased fluidity of the apical cortex and reduced accumulation of E-cadherin and phalloidin-labeled actin filaments at junctions but had no significant effect on TJ membrane tortuosity. Fluorescence recovery after photobleaching (FRAP) showed that the KO of NM2B increased the dynamics of the TJ scaffold protein ZO-1, correlating with decreased ZO-1 accumulation at TJs. Finally, the KO of NM2B increased cell size in cells grown both in 2D and 3D but did not alter lumen morphogenesis of cysts. These results extend our understanding of the functions of NM2B by describing its role in the regulation of the mechanical properties of the apical membrane cortex and cell size and validate our model about the role of cingulin-NM2B interaction in the regulation of ZO-1 dynamics.

摘要

在上皮细胞中,非肌肉肌球蛋白-2B(NM2B)呈现皮质定位,并通过连接适配蛋白cingulin和副cingulin与紧密连接(TJ)和黏附连接(AJ)相连。cingulin基因敲除(KO)的MDCK细胞显示顶端膜皮质硬度降低以及TJ膜曲折度降低,而这些表型的挽救需要cingulin的肌球蛋白结合区域。在此,我们通过生成并鉴定NM2B基因敲除的MDCK细胞克隆系,研究了NM2B是否独立于cingulin对这些表型有贡献。NM2B的缺失导致顶端皮质硬度降低、流动性增加,以及E-钙黏蛋白和鬼笔环肽标记的肌动蛋白丝在连接处的积累减少,但对TJ膜曲折度没有显著影响。光漂白后荧光恢复(FRAP)显示,NM2B基因敲除增加了TJ支架蛋白ZO-1的动态变化,这与ZO-1在TJ处的积累减少相关。最后,NM2B基因敲除增加了二维和三维培养细胞的大小,但未改变囊肿的管腔形态发生。这些结果通过描述NM2B在调节顶端膜皮质机械性能和细胞大小中的作用,扩展了我们对NM2B功能的理解,并验证了我们关于cingulin-NM2B相互作用在调节ZO-1动态变化中的作用的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d33/12346661/3c4529b2f9ec/cells-14-01138-g001.jpg

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