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TAZ 响应流体切应力来调节细胞周期。

TAZ responds to fluid shear stress to regulate the cell cycle.

机构信息

a Children's Regenerative Medicine Program , Department of Pediatric Surgery , University of Texas Health Science Center at Houston , TX , USA.

b Center for Stem Cell and Regenerative Medicine , The Brown Foundation Institute of Molecular Medicine , University of Texas Health Science Center at Houston , TX , USA.

出版信息

Cell Cycle. 2018;17(2):147-153. doi: 10.1080/15384101.2017.1404209. Epub 2018 Jan 18.

Abstract

Physical forces associated with tumor growth and drainage alter cancer cell invasiveness and metastatic potential. We previously showed that fluid frictional force, or shear stress, typical of lymphatic flow induces YAP1/TAZ activation in prostate cancer cells to promote motility dependent upon YAP1 but not TAZ. Here, we show that shear stress elevates TAZ protein levels and promotes TAZ nuclear localization. Increased TAZ activity drives increased DNA synthesis and induces AMOTL2, ANKRD1, and CTGF gene transcription independently of YAP1. Ectopic expression of constitutively activated TAZ increases expression of these TAZ target genes and promotes cell proliferation of prostate cancer cells. Conversely, silencing of TAZ results in reduced proliferation. Together, our data show that force-induced TAZ regulates signaling that dictates cell division, and suggest that TAZ may govern cellular proliferation of cancer cells traveling through the lymphatics in response to biophysical cues.

摘要

与肿瘤生长和引流相关的物理力改变了癌细胞的侵袭性和转移潜能。我们之前曾表明,典型的淋巴流动产生的流体摩擦阻力或切应力会激活前列腺癌细胞中的 YAP1/TAZ,从而促进依赖 YAP1 而非 TAZ 的运动性。在这里,我们发现切应力会提高 TAZ 蛋白水平并促进 TAZ 核定位。增加的 TAZ 活性会增加 DNA 合成,并独立于 YAP1 诱导 AMOTL2、ANKRD1 和 CTGF 基因转录。组成性激活的 TAZ 的异位表达会增加这些 TAZ 靶基因的表达,并促进前列腺癌细胞的增殖。相反,沉默 TAZ 会导致增殖减少。总之,我们的数据表明,力诱导的 TAZ 调节了决定细胞分裂的信号,表明 TAZ 可能控制癌症细胞在通过淋巴系统时对生物物理线索的增殖。

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