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Mechanical Ring Interfaces between Adherens Junction and Contractile Actomyosin to Coordinate Entotic Cell-in-Cell Formation

机译:粘附结和收缩肌动素之间的机械环界面,以协调偶然的细胞形成

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Entosis is a cell-in-cell (CIC)-mediated death program. Contractile actomyosin (CA) and the adherens junction (AJ) are two core elements essential for entotic CIC formation, but the molecular structures interfacing them remain poorly understood. Here, we report the characterization of a ring-like structure interfacing between the peripheries of invading and engulfing cells. The ring-like structure is a multi-molecular complex consisting of adhesive and cytoskeletal proteins, in which the mechanical sensor vinculin is highly enriched. The vinculin-enriched structure senses mechanical force imposed on cells, as indicated by fluorescence resonance energy transfer (FRET) analysis, and is thus termed the mechanical ring (MR). The MR actively interacts with CA and the AJ to help establish and maintain polarized actomyosin that drives cell internalization. Vinculin depletion leads to compromised MR formation, CA depolarization, and subsequent CIC failure. In summary, we suggest that the vinculin-enriched MR, in addition to CA and AJ, is another core element essential for entosis.
机译:entis是细胞内(CIC)导明的死亡计划。收缩肌肌素(CA)和粘附结(AJ)是两个核心元素,对偶象CIC形成是必不可少的,但接口它们的分子结构仍然明白很差。这里,我们报告了侵入和吞噬细胞外周之间的环状结构的表征。环状结构是由粘合剂和细胞骨架蛋白组成的多分子复合物,其中机械传感器Vinculin高度富集。富含Vinculin富集的结构感测电池施加的机械力,如荧光共振能量转移(FRET)分析所示,因此被称为机械环(MR)。 MR主动与CA和AJ进行互动,以帮助建立和维持推动细胞内化的偏振肌动酶。 vinculin枯竭导致MR形成,Ca去极化和随后的CIC失败。总之,我们建议富含CA和AJ的富含Vinculin--in,是另一个对卵体项所必需的核心元素。

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