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WAVE 促进极化的 E-钙黏蛋白运输。

WAVE facilitates polarized E-cadherin transport.

机构信息

Department of Pathology and Laboratory Medicine, Rutgers Robert Wood Johnson Medical School, Piscataway, NJ 08854.

Biology Department, Saint Elizabeth University, Morristown, NJ 07960.

出版信息

Mol Biol Cell. 2023 May 1;34(5):ar44. doi: 10.1091/mbc.E22-08-0322. Epub 2023 Mar 22.

Abstract

Cadherin dynamics drive morphogenesis, while defects in cadherin polarity contribute to diseases, including cancers. However, the forces polarizing cadherin membrane distribution are not well understood. We previously showed that WAVE-dependent branched actin polarizes cadherin distribution and suggested that one mechanism is protein transport. While previous studies suggested that WAVE is enriched at various endocytic organelles, the role of WAVE in protein traffic is understudied. Here we test the model that WAVE regulates cadherin by polarizing its transport. In support of this model we show that 1) endogenously tagged WAVE accumulates in vivo at several endocytic organelles, including recycling endosomes and at the Golgi; 2) likewise, cadherin protein accumulates at recycling endosomes and the Golgi; 3) loss of WAVE components reduces cadherin accumulation at apically directed RAB-11-positive recycling endosomes and increases accumulation at the Golgi. In addition, live imaging illustrates that dynamics and velocity of recycling endosomes enriched for RAB-11::GFP and RFP::RME-1 are reduced in animals depleted of WAVE components and RAB-11::GFP movements are misdirected, suggesting that WAVE powers and directs their movements. This in vivo study demonstrates the importance of WAVE in promoting polarized transport in epithelia and supports a model that WAVE promotes cell-cell adhesion and polarity by promoting cadherin transport.

摘要

钙黏蛋白动力学驱动形态发生,而钙黏蛋白极性缺陷会导致包括癌症在内的疾病。然而,将钙黏蛋白膜分布极化的力还没有得到很好的理解。我们之前曾表明,WAVE 依赖性分支肌动蛋白使钙黏蛋白分布极化,并提出一种机制是蛋白质运输。虽然之前的研究表明 WAVE 在各种内吞细胞器中富集,但 WAVE 在蛋白质运输中的作用还没有得到充分研究。在这里,我们测试了 WAVE 通过极化其运输来调节钙黏蛋白的模型。为了支持这个模型,我们表明:1)内源性标记的 WAVE 在体内积累在几个内吞细胞器中,包括再循环内体和高尔基体;2)同样,钙黏蛋白蛋白在再循环内体和高尔基体中积累;3)WAVE 成分的缺失减少了钙黏蛋白在 RAB-11 阳性再循环内体的顶向积累,并增加了在高尔基体的积累。此外,实时成像说明了在 WAVE 成分和 RAB-11::GFP 的耗尽的动物中,富含 RAB-11::GFP 和 RFP::RME-1 的再循环内体的动力学和速度降低,并且 GFP::RAB-11 的运动被误导,表明 WAVE 为它们的运动提供动力并指导它们的运动。这项体内研究证明了 WAVE 在促进上皮细胞中极化运输的重要性,并支持了 WAVE 通过促进钙黏蛋白运输来促进细胞-细胞黏附和极性的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e425/10162425/14c631681bfa/mbc-34-ar44-g001.jpg

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