Immunology Division, Department of Pediatrics, Faculty of Medicine and Health Sciences, Université de Sherbrooke, Sherbrooke, Québec, Canada.
J Cell Physiol. 2012 Feb;227(2):789-800. doi: 10.1002/jcp.22792.
Tumor hypoxia is strongly associated with malignant progression such as increased cell invasion and metastasis. Although the invasion-related genes affected by hypoxia have been well described, the contribution of post-transcriptional mechanisms such as protein trafficking and proprotein processing associated with the hypoxic response remains poorly understood. The proprotein convertase furin, the major processing enzyme of the secretory pathway, resides in the trans-Golgi network and most studies support a model where endogenous substrates are processed by furin within this compartment. Here, we report that hypoxia triggered an unexpected relocalization of furin from the trans-Golgi network to endosomomal compartments and the cell surface in cancer cells. Exposing these cells back to normoxic conditions reversed furin redistribution, suggesting that the tumor microenvironment modulates furin trafficking in a highly regulated manner. Assessment of the mechanisms involved revealed that both Rab4GTPase-dependent recycling and interaction of furin with the cytoskeletal anchoring protein, filamin-A, are essential for the cell surface relocalization of furin. Interference with the association of furin with filamin-A, prevented cell surface relocalization of furin and abolished the ability of cancer cells to migrate in response to hypoxia. Our observations support the notion that hypoxia promotes the formation of a peripheral processing compartment where furin translocates for enhanced processing of proproteins involved in tumorigenesis.
肿瘤缺氧与恶性进展密切相关,如细胞侵袭和转移增加。尽管缺氧相关的侵袭相关基因已经得到很好的描述,但与缺氧反应相关的转录后机制,如蛋白质运输和前蛋白加工的贡献仍知之甚少。蛋白水解酶 furin 是分泌途径的主要加工酶,位于反式高尔基体网络中,大多数研究支持这样一种模型,即内源性底物在该隔室中由 furin 加工。在这里,我们报告缺氧触发了原蛋白转化酶 furin 从反式高尔基体网络到内体区室和癌细胞表面的意外重新定位。将这些细胞暴露回正常氧条件下可逆转 furin 的重新分布,表明肿瘤微环境以高度调控的方式调节 furin 转运。对所涉及的机制的评估表明,Rab4GTPase 依赖性循环和 furin 与细胞骨架锚定蛋白细丝蛋白 A 的相互作用对于 furin 的细胞表面重新定位都是必需的。干扰 furin 与细丝蛋白 A 的结合,阻止了 furin 的细胞表面重新定位,并消除了癌细胞对缺氧反应迁移的能力。我们的观察结果支持这样一种观点,即缺氧促进了形成一个外周加工隔室,其中 furin 易位以增强与肿瘤发生相关的前蛋白的加工。