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内皮素 A 受体驱动β-arrestin1 与 talin1 的相互作用作为高级别浆液性卵巢癌中 α5β1 整合素激活的特征。

The interaction of β-arrestin1 with talin1 driven by endothelin A receptor as a feature of α5β1 integrin activation in high-grade serous ovarian cancer.

机构信息

Institute of Molecular Biology and Pathology, CNR, Rome, 00185, Italy.

Unit of Preclinical Models and New Therapeutic Agents, IRCCS-Regina Elena National Cancer Institute, Rome, 00144, Italy.

出版信息

Cell Death Dis. 2023 Jan 30;14(1):73. doi: 10.1038/s41419-023-05612-7.

Abstract

Dissemination of high-grade serous ovarian cancer (HG-SOC) in the omentum and intercalation into a mesothelial cell (MC) monolayer depends on functional α5β1 integrin (Intα5β1) activity. Although the binding of Intα5β1 to fibronectin drives these processes, other molecular mechanisms linked to integrin inside-out signaling might support metastatic dissemination. Here, we report a novel interactive signaling that contributes to Intα5β1 activation and accelerates tumor cells toward invasive disease, involving the protein β-arrestin1 (β-arr1) and the activation of the endothelin A receptor (ETR) by endothelin-1 (ET-1). As demonstrated in primary HG-SOC cells and SOC cell lines, ET-1 increased Intβ1 and downstream FAK/paxillin activation. Mechanistically, β-arr1 directly interacts with talin1 and Intβ1, promoting talin1 phosphorylation and its recruitment to Intβ1, thus fueling integrin inside-out activation. In 3D spheroids and organotypic models mimicking the omentum, ETR/β-arr1-driven Intα5β1 signaling promotes the survival of cell clusters, with mesothelium-intercalation capacity and invasive behavior. The treatment with the antagonist of ETR, Ambrisentan (AMB), and of Intα5β1, ATN161, inhibits ET-1-driven Intα5β1 activity in vitro, and tumor cell adhesion and spreading to intraperitoneal organs and Intβ1 activity in vivo. As a prognostic factor, high EDNRA/ITGB1 expression correlates with poor HG-SOC clinical outcomes. These findings highlight a new role of ETR/β-arr1 operating an inside-out integrin activation to modulate the metastatic process and suggest that in the new integrin-targeting programs might be considered that ETR/β-arr1 regulates Intα5β1 functional pathway.

摘要

高级别浆液性卵巢癌(HG-SOC)在大网膜中的扩散和插入到间皮细胞(MC)单层中依赖于功能性 α5β1 整联蛋白(Intα5β1)活性。尽管 Intα5β1 与纤维连接蛋白的结合驱动了这些过程,但与整合素内信号转导相关的其他分子机制可能支持转移扩散。在这里,我们报告了一种新的相互作用信号,它有助于 Intα5β1 的激活,并加速肿瘤细胞向侵袭性疾病发展,涉及蛋白β-arrestin1(β-arr1)和内皮素-1(ET-1)对内皮素 A 受体(ETR)的激活。正如在原发性 HG-SOC 细胞和 SOC 细胞系中所证明的那样,ET-1 增加了 Intβ1 和下游 FAK/桩蛋白的激活。从机制上讲,β-arr1 直接与 talin1 和 Intβ1 相互作用,促进 talin1 的磷酸化及其向 Intβ1 的募集,从而推动整合素的内信号转导激活。在 3D 球体和模拟大网膜的器官型模型中,ETR/β-arr1 驱动的 Intα5β1 信号促进细胞簇的存活,具有间皮插入能力和侵袭行为。ETR 拮抗剂 Ambrisentan(AMB)和 Intα5β1 拮抗剂 ATN161 的治疗抑制了体外 ET-1 驱动的 Intα5β1 活性以及肿瘤细胞在体内对腹膜器官的粘附和扩散和 Intβ1 活性。作为一个预后因素,高 EDNRA/ITGB1 表达与 HG-SOC 不良的临床结局相关。这些发现强调了 ETR/β-arr1 作为一种新的作用机制,通过激活内信号转导来调节转移过程,并表明在新的整合素靶向治疗方案中,可能需要考虑 ETR/β-arr1 调节 Intα5β1 功能途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8664/9886921/694bcba5e00d/41419_2023_5612_Fig1_HTML.jpg

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