RhoA-ROCK与YAP竞争调节变形虫乳腺癌细胞对淋巴样流动的迁移。

IF 2.5 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Amina Mohammadalipour, Miguel F Diaz, Megan Livingston, Adesuwa Ewere, Allen Zhou, Paulina D Horton, Loretta T Olamigoke, John M Lamar, John P Hagan, Hyun J Lee, Pamela L Wenzel
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引用次数: 5

摘要

淋巴引流产生的力通过yes相关蛋白(YAP)的激活诱导前列腺癌细胞运动,但这种对流体力的反应是否在各种癌症类型中都是保守的尚不清楚。在这里,我们表明,与初始淋巴管中流体流动相对应的剪切应力改变了乳腺癌的趋向性,而一些细胞系使用快速变形虫迁移行为来响应流体流动,一个单独的子集减少了运动。阳性应答者表现出变形虫细胞状态的转录谱特征,这是肿瘤肿瘤边缘细胞前进的典型特征。HIPPO肿瘤抑制通路和YAP活性的调节在乳腺癌亚群和前列腺癌之间也存在差异。尽管YAP在细胞核的亚细胞定位与整体运动速度正相关,但YAP功能的获得和丧失表明,YAP抑制乳腺癌的运动,但在流动的背景下,YAP被其他促进运动的介质所取代。具体来说,我们表明RhoA决定了对流动的反应。RhoA的GTPase活性,而不是Rac1或Cdc42 Rho家族GTPase活性,在对血流有积极反应的细胞中升高,在血流减慢的细胞中保持不变。RhoA或RhoA效应物,RhoA相关激酶(ROCK)的破坏,阻断剪切应力诱导的运动。总的来说,这些发现确定了生物力学力作为变形虫细胞迁移的调节因子,并通过流量传感机械转导途径证明了乳腺癌亚群的分层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

RhoA-ROCK competes with YAP to regulate amoeboid breast cancer cell migration in response to lymphatic-like flow.

RhoA-ROCK competes with YAP to regulate amoeboid breast cancer cell migration in response to lymphatic-like flow.

RhoA-ROCK competes with YAP to regulate amoeboid breast cancer cell migration in response to lymphatic-like flow.

RhoA-ROCK competes with YAP to regulate amoeboid breast cancer cell migration in response to lymphatic-like flow.

Lymphatic drainage generates force that induces prostate cancer cell motility via activation of Yes-associated protein (YAP), but whether this response to fluid force is conserved across cancer types is unclear. Here, we show that shear stress corresponding to fluid flow in the initial lymphatics modifies taxis in breast cancer, whereas some cell lines use rapid amoeboid migration behavior in response to fluid flow, a separate subset decrease movement. Positive responders displayed transcriptional profiles characteristic of an amoeboid cell state, which is typical of cells advancing at the edges of neoplastic tumors. Regulation of the HIPPO tumor suppressor pathway and YAP activity also differed between breast subsets and prostate cancer. Although subcellular localization of YAP to the nucleus positively correlated with overall velocity of locomotion, YAP gain- and loss-of-function demonstrates that YAP inhibits breast cancer motility but is outcompeted by other pro-taxis mediators in the context of flow. Specifically, we show that RhoA dictates response to flow. GTPase activity of RhoA, but not Rac1 or Cdc42 Rho family GTPases, is elevated in cells that positively respond to flow and is unchanged in cells that decelerate under flow. Disruption of RhoA or the RhoA effector, Rho-associated kinase (ROCK), blocked shear stress-induced motility. Collectively, these findings identify biomechanical force as a regulator amoeboid cell migration and demonstrate stratification of breast cancer subsets by flow-sensing mechanotransduction pathways.

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来源期刊
FASEB bioAdvances
FASEB bioAdvances Multiple-
CiteScore
5.40
自引率
3.70%
发文量
56
审稿时长
10 weeks
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