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STK33 participates to HSP90-supported angiogenic program in hypoxic tumors by regulating HIF-1α/VEGF signaling pathway

机译:STK33通过调节HIF-1α/ VEGF信号通路参与HSP90支持的低氧肿瘤血管生成程序

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摘要

Lately, the HSP90 client serine/threonine kinase STK33 emerged to be required by cancer cells for their viability and proliferation. However, its mechanistic contribution to carcinogenesis is not clearly understood. Here we report that elevated STK33 expression correlates with advanced stages of human pancreatic and colorectal carcinomas. Impaired proliferation and augmented apoptosis associated with genetic abrogation of STK33 were paralleled by decreased vascularization in tumor xenografts. In line with this, ectopic STK33 not only promoted tumor growth after pharmacologic inhibition of HSP90 using structurally divergent small molecules currently in clinical development, but also restored blood vessel formation in vivo. Mechanistic studies demonstrated that HSP90-stabilized STK33 interacts with and regulates hypoxia-driven accumulation and activation of HIF-1α as well as secretion of VEGF-A in hypoxic cancer cells. In addition, our study reveals a putative cooperation between STK33 and other HSP90 client protein kinases involved in molecular and cellular events through which cancer cells ensure their survival by securing the oxygen and nutrient supply. Altogether, our findings indicate that STK33 interferes with signals from hypoxia and HSP90 to promote tumor angiogenesis and tumor growth.
机译:最近,癌细胞开始需要HSP90客户丝氨酸/苏氨酸激酶STK33的生存能力和增殖能力。但是,尚不清楚其对致癌作用的机制贡献。在这里我们报告说升高的STK33表达与人类胰腺癌和大肠癌的晚期阶段相关。与STK33遗传废除相关的增殖障碍和凋亡增加与肿瘤异种移植物中血管形成的减少平行。与此相符,异位STK33不仅在药理学上抑制HSP90后使用目前临床开发中的结构分歧小分子促进肿瘤生长,而且还恢复了体内血管的形成。机理研究表明,HSP90稳定的STK33与低氧癌细胞中缺氧驱动的HIF-1α积累和活化以及VEGF-A的分泌相互作用,并对其调节。此外,我们的研究揭示了STK33与其他参与分子和细胞事件的HSP90客户蛋白激酶之间的推定合作,通过这种合作,癌细胞可通过确保氧气和营养供应来确保其生存。总之,我们的发现表明STK33干扰来自缺氧和HSP90的信号,从而促进肿瘤血管生成和肿瘤生长。

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