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EpCAM 促进皮质 RhoA 区的内体调节,以维持上皮组织的形态。

EpCAM promotes endosomal modulation of the cortical RhoA zone for epithelial organization.

机构信息

Cell Adhesion and Mechanics, Institut Jacques Monod, CNRS UMR7592, Paris Diderot University, Paris, France.

Mechanobiology Institute, T-lab, Singapore, Singapore.

出版信息

Nat Commun. 2021 Apr 13;12(1):2226. doi: 10.1038/s41467-021-22482-9.

Abstract

At the basis of cell shape and behavior, the organization of actomyosin and its ability to generate forces are widely studied. However, the precise regulation of this contractile network in space and time is unclear. Here, we study the role of the epithelial-specific protein EpCAM, a contractility modulator, in cell shape and motility. We show that EpCAM is required for stress fiber generation and front-rear polarity acquisition at the single cell level. In fact, EpCAM participates in the remodeling of a transient zone of active RhoA at the cortex of spreading epithelial cells. EpCAM and RhoA route together through the Rab35/EHD1 fast recycling pathway. This endosomal pathway spatially organizes GTP-RhoA to fine tune the activity of actomyosin resulting in polarized cell shape and development of intracellular stiffness and traction forces. Impairment of GTP-RhoA endosomal trafficking either by silencing EpCAM or by expressing Rab35/EHD1 mutants prevents proper myosin-II activity, stress fiber formation and ultimately cell polarization. Collectively, this work shows that the coupling between co-trafficking of EpCAM and RhoA, and actomyosin rearrangement is pivotal for cell spreading, and advances our understanding of how biochemical and mechanical properties promote cell plasticity.

摘要

在细胞形状和行为的基础上,肌动球蛋白的组织及其产生力的能力得到了广泛的研究。然而,这种收缩网络在空间和时间上的精确调节尚不清楚。在这里,我们研究了上皮特异性蛋白 EpCAM(一种收缩性调节剂)在细胞形状和运动中的作用。我们表明,EpCAM 是细胞水平上应力纤维产生和前后极性获得所必需的。事实上,EpCAM 参与了扩展上皮细胞皮质中活性 RhoA 的瞬时区的重塑。EpCAM 和 RhoA 通过 Rab35/EHD1 快速再循环途径一起途径。这个内体途径空间组织 GTP-RhoA,以微调肌动球蛋白的活性,导致极化的细胞形状和细胞内刚度和牵引力的发展。通过沉默 EpCAM 或表达 Rab35/EHD1 突变体来破坏 GTP-RhoA 内体运输,会阻止肌球蛋白-II 的适当活性、应力纤维形成,最终导致细胞极化。总的来说,这项工作表明,EpCAM 和 RhoA 的共运输与肌动球蛋白重排的结合对于细胞扩展至关重要,并提高了我们对生化和机械特性如何促进细胞可塑性的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9185/8044225/e139762cf52e/41467_2021_22482_Fig1_HTML.jpg

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