Department of Biophysics, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu 610054, Sichuan, PR China.
Department of Biophysics, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu 610054, Sichuan, PR China; Center for Information in Biology, University of Electronic Science and Technology of China, Chengdu 610054, Sichuan, PR China.
Biochim Biophys Acta Mol Cell Res. 2020 May;1867(5):118676. doi: 10.1016/j.bbamcr.2020.118676. Epub 2020 Feb 8.
In egress routes of malignancy, cancer cells are constantly subjected to shear stress imposed by blood/lymph flow. Increasing evidence points toward the regulatory roles of shear stress in tumor cell adhesion and motility. Although it is known that integrin endocytic trafficking governs focal adhesion (FA) turnover and cell migration, the effect and biological consequences of low shear stress (LSS) on integrin trafficking remain unclear. Here, we identified the critical role of integrin β1 trafficking and caveolin-1 (Cav-1) mediated endocytosis in LSS-induced cell directional migration. LSS altered the distribution of integrin β1 in MDA-MB-231 cells and significantly promoted its internalization and recycling, which in turn facilitated FA turnover and directional cell migration. Furthermore, LSS induced cytoskeleton remodeling, which was required for internalization of integrin β1. LSS down-regulated the acetylation level of microtubules (MTs) via activating ROCK/HDAC6 pathway, resulting in elevation of MTs dynamics, Cav-1 motility, and Cav-1-dependent integrin β1 recycling. We also showed that high HDAC6 expression was a ROCK-dependent prognostic factor, which was correlated with poor outcomes in breast cancer patients. Taken together, these results defined a novel mechanism by which LSS enhanced integrin β1 trafficking via actin cytoskeleton remodeling and ROCK/HDAC6 mediated deacetylation of MTs, thereby promoting FAs turnover and directional cell migration.
在恶性肿瘤的流出途径中,癌细胞不断受到血流/淋巴流产生的切变应力的影响。越来越多的证据表明切变应力在肿瘤细胞黏附和运动中起调节作用。虽然已知整合素内吞运输控制着焦点黏附(FA)的周转率和细胞迁移,但低切变应力(LSS)对整合素运输的影响及其生物学后果尚不清楚。在这里,我们确定了整合素β1运输和小窝蛋白-1(Cav-1)介导的内吞作用在 LSS 诱导的细胞定向迁移中的关键作用。LSS 改变了 MDA-MB-231 细胞中整合素β1的分布,并显著促进了其内化和再循环,这反过来又促进了 FA 的周转率和细胞的定向迁移。此外,LSS 诱导细胞骨架重塑,这是整合素β1内化所必需的。LSS 通过激活 ROCK/HDAC6 通路下调微管(MTs)的乙酰化水平,导致 MTs 动力学、Cav-1 运动性和 Cav-1 依赖性整合素β1再循环的增加。我们还表明,高 HDAC6 表达是一种 ROCK 依赖性预后因素,与乳腺癌患者的不良预后相关。总之,这些结果定义了一种新的机制,即通过肌动蛋白细胞骨架重塑和 ROCK/HDAC6 介导的 MTs 去乙酰化增强 LSS 下的整合素β1运输,从而促进 FA 的周转率和细胞的定向迁移。