α-catenin middle- and actin-binding domain unfolding mutants differentially impact epithelial strength and sheet migration.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
ACS Applied Electronic Materials Pub Date : 2024-05-01 Epub Date: 2024-03-20 DOI:10.1091/mbc.E23-01-0036
Jeanne M Quinn, Yuou Wang, Megan Wood, Annette S Flozak, Phuong M Le, Alex Yemelyanov, Patrick W Oakes, Cara J Gottardi
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引用次数: 0

Abstract

α-catenin (α-cat) displays force-dependent unfolding and binding to actin filaments through direct and indirect means, but features of adherens junction structure and function most vulnerable to loss of these allosteric mechanisms have not been directly compared. By reconstituting an α-cat F-actin-binding domain unfolding mutant known to exhibit enhanced binding to actin (α-cat-H0-FABD+) into α-cat knockout Madin Darby Canine Kidney (MDCK) cells, we show that partial loss of the α-cat catch bond mechanism (via an altered H0 α-helix) leads to stronger epithelial sheet integrity with greater colocalization between the α-cat-H0-FABD+ mutant and actin. α-cat-H0-FABD+ -expressing cells are less efficient at closing scratch-wounds, suggesting reduced capacity for more dynamic cell-cell coordination. Evidence that α-cat-H0-FABD+ is equally accessible to the conformationally sensitive α18 antibody epitope as WT α-cat and shows similar vinculin recruitment suggests this mutant engages lower tension cortical actin networks, as its M-domain is not persistently open. Conversely, α-cat-M-domain salt-bridge mutants with persistent recruitment of vinculin and phosphorylated myosin light chain show only intermediate monolayer adhesive strengths, but display less directionally coordinated and thereby slower migration speeds during wound-repair. These data show α-cat M- and FABD-unfolding mutants differentially impact cell-cell cohesion and migration properties, and suggest signals favoring α-cat-cortical actin interaction without persistent M-domain opening may improve epithelial monolayer strength through enhanced coupling to lower tension actin networks.

α-catenin中间结合域和肌动蛋白结合域折叠突变体对上皮强度和薄片迁移有不同影响。
α-catenin(α-cat)通过直接和间接的方式显示出依赖于力的展开和与肌动蛋白丝的结合,但是粘连接头结构和功能中最容易失去这些异构机制的特征还没有被直接比较过。通过将已知与肌动蛋白结合力增强的α-cat F-肌动蛋白结合域解折突变体(α-cat-H0-FABD+)重组到α-cat基因敲除的Madin Darby Canine Kidney (MDCK)细胞中,我们发现部分丧失α-cat捕捉键机制(通过改变的H0 α-螺旋)会导致上皮薄片完整性增强,α-cat-H0-FABD+突变体与肌动蛋白之间的共定位更强。表达α-cat-H0-FABD+的细胞关闭划痕伤口的效率较低,这表明细胞间动态协调能力降低。有证据表明,α-cat-H0-FABD+ 与 WT α-cat 一样可以接触到构象敏感的 α18 抗体表位,并显示出相似的 vinculin 募集,这表明该突变体参与张力较低的皮层肌动蛋白网络,因为其 M-域不是持续开放的。相反,α-cat-M-domain 盐桥突变体持续招募长春质蛋白和磷酸化肌球蛋白轻链,只表现出中等的单层粘附强度,但在伤口修复过程中方向协调性较差,因此迁移速度较慢。这些数据表明,α-cat M-和 FABD-折叠突变体对细胞-细胞内聚力和迁移特性有不同影响,并表明有利于α-cat-皮质肌动蛋白相互作用而不持续开放 M-域的信号可能会通过增强与低张力肌动蛋白网络的耦合来提高上皮单层强度。[媒体:见正文]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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