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神经纤毛蛋白-2 调节α6β1 整合素在粘着斑形成和信号转导中的作用。

Neuropilin-2 regulates α6β1 integrin in the formation of focal adhesions and signaling.

机构信息

Department of Cancer Biology, University of Massachusetts Medical School Worcester, MA 01605, USA.

出版信息

J Cell Sci. 2012 Jan 15;125(Pt 2):497-506. doi: 10.1242/jcs.094433. Epub 2012 Feb 2.

Abstract

The neuropilins (NRPs) contribute to the function of cancer cells in their capacity as VEGF receptors. Given that NRP2 is induced in breast cancer and correlates with aggressive disease, we examined the role of NRP2 in regulating the interaction of breast cancer cells with the ECM. Using epithelial cells from breast tumors, we defined NRP2(high) and NRP2(low) populations that differed in integrin expression and adhesion to laminin. Specifically, the NRP2(high) population adhered more avidly to laminin and expressed high levels of the α6β1 integrin than the NRP2(low) population. The NRP2(high) population formed numerous focal adhesions on laminin that were not seen in the NRP2(low) population. These results were substantiated using breast carcinoma cell lines that express NRP2 and α6β1 integrin. Depletion experiments revealed that adhesive strength on laminin but not collagen is dependent on NRP2, and that VEGF is needed for adhesion on laminin. A specific interaction between NRP2 and α6β1 integrin was detected by co-immunoprecipitation. NRP2 is necessary for focal adhesion formation on laminin and for the association of α6β1 integrin with the cytoskeleton. NRP2 also facilitates α6β1-integrin-mediated activation of FAK and Src. Unexpectedly, we discovered that NRP2 is located in focal adhesions on laminin. The mechanism by which NRP2 regulates the interaction of α6β1 integrin with laminin to form focal adhesions involves PKC activation. Together, our data reveal a new VEGF-NRP2 signaling pathway that activates the α6β1 integrin and enables it to form focal adhesions and signal. This pathway is important in the pathogenesis of breast cancer.

摘要

神经纤毛蛋白(NRPs)作为 VEGF 受体,有助于癌细胞发挥功能。鉴于 NRP2 在乳腺癌中被诱导并与侵袭性疾病相关,我们研究了 NRP2 在调节乳腺癌细胞与 ECM 相互作用中的作用。我们使用来自乳腺肿瘤的上皮细胞,定义了 NRP2(高)和 NRP2(低)群体,它们在整合素表达和与层粘连蛋白的黏附方面存在差异。具体而言,NRP2(高)群体比 NRP2(低)群体更强烈地黏附于层粘连蛋白,并表达高水平的α6β1 整合素。NRP2(高)群体在层粘连蛋白上形成了许多焦点黏附,而 NRP2(低)群体则没有。这些结果通过表达 NRP2 和α6β1 整合素的乳腺癌细胞系得到了证实。耗竭实验表明,对层粘连蛋白的黏附强度(而非胶原蛋白)依赖于 NRP2,并且 VEGF 对于在层粘连蛋白上的黏附是必需的。通过共免疫沉淀检测到 NRP2 与α6β1 整合素之间的特异性相互作用。NRP2 对于在层粘连蛋白上形成焦点黏附以及α6β1 整合素与细胞骨架的关联是必需的。NRP2 还促进了α6β1 整合素介导的 FAK 和 Src 的激活。出乎意料的是,我们发现 NRP2 位于层粘连蛋白上的焦点黏附中。NRP2 调节α6β1 整合素与层粘连蛋白相互作用以形成焦点黏附的机制涉及 PKC 激活。总之,我们的数据揭示了一种新的 VEGF-NRP2 信号通路,该通路激活了α6β1 整合素,使其能够形成焦点黏附并发出信号。该通路在乳腺癌的发病机制中很重要。

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