首页> 外文期刊>Journal of Cell Science >ErbB2 requires integrin alpha5 for anoikis resistance via Src regulation of receptor activity in human mammary epithelial cells.
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ErbB2 requires integrin alpha5 for anoikis resistance via Src regulation of receptor activity in human mammary epithelial cells.

机译:ErbB2通过Src调节人类乳腺上皮细胞中的受体活性,需要整合素alpha5来实现抗厌氧反应。

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摘要

ErbB2, a receptor tyrosine kinase highly expressed in many tumors, is known to inhibit apoptotic signals. Overexpression of ErbB2 causes anoikis resistance that contributes to luminal filling in three-dimensional mammary epithelial acinar structures in vitro. Given that integrins and growth factor receptors are highly interdependent for function, we examined the role of integrin subunits in ErbB2-mediated survival signaling. Here, we show that MCF-10A cells overexpressing ErbB2 upregulate integrin alpha5 via the MAP-kinase pathway in three-dimensional acini and found elevated integrin alpha5 levels associated with ErbB2 status in human breast cancer. Integrin alpha5 is required for ErbB2-mediated anoikis resistance and for optimal ErbB2 signaling to the Mek-Erk-Bim axis as depletion of integrin alpha5 reverses anoikis resistance and Bim inhibition. Integrin alpha5 is required for full activation of ErbB2 tyrosine phosphorylation on Y877 and ErbB2 phosphorylation is associated with increased activity of Src in the absence of adhesion. Indeed, we show that blocking elevated Src activity during cell detachment reverses ErbB2-mediated survival and Bim repression. Thus, integrin alpha5 serves as a key mediator of Src and ErbB2-survival signaling in low adhesion states, which are necessary to block the pro-anoikis mediator Bim, and we suggest that this pathway represents a potential novel therapeutic target in ErbB2-positive tumors.
机译:众所周知,ErbB2是在许多肿瘤中高度表达的受体酪氨酸激酶,可抑制凋亡信号。 ErbB2的过表达会引起厌食症抵抗力,这有助于体外三维乳腺上皮腺泡结构中的腔充盈。鉴于整合素和生长因子受体的功能高度相关,我们研究了整合素亚基在ErbB2介导的生存信号中的作用。在这里,我们显示MCF-10A细胞过度表达ErbB2通过三维激酶中的MAP激酶途径上调整联蛋白alpha5,并发现与人类乳腺癌中ErbB2状态相关的整联蛋白alpha5水平升高。整联蛋白α5是ErbB2介导的耐厌氧症和向Mek-Erk-Bim轴的最佳ErbB2信号传递所必需的,因为整联蛋白α5的耗竭会逆转其对厌氧症和Bim抑制作用。整合素alpha5是Y877上ErbB2酪氨酸磷酸化的完全激活所必需的,而ErbB2磷酸化与Src在没有粘附力的情况下的活性增加有关。确实,我们显示出在细胞脱离过程中阻止升高的Src活性可以逆转ErbB2介导的存活和Bim抑制。因此,整联蛋白α5在低黏附状态下是Src和ErbB2生存信号的关键介体,这对于阻断促神经递质介体Bim是必不可少的,我们建议该途径代表ErbB2阳性肿瘤中潜在的新型治疗靶点。

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