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Metabolic stress induces the lysosomal degradation of neuropilin-1 but not neuropilin-2

机译:代谢应激诱导神经毡蛋白-1的溶酶体降解,但不诱导神经毡蛋白-2

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摘要

The neuropilins-1 and -2 (NRP1 and NRP2) function as receptors for both the semaphorins and vascular endothelial growth factor. In addition to their contribution to the development of the nervous system, NRP1 and NRP2 have been implicated in angiogenesis and tumor progression. Given their importance to cancer and endothelial biology and their potential as therapeutic targets, an important issue that has not been addressed is the impact of metabolic stress conditions characteristic of the tumor microenvironment on their expression and function. Here, we demonstrate that hypoxia and nutrient deprivation stimulate the rapid loss of NRP1 expression in both endothelial and carcinoma cells. NRP2 expression, in contrast, is maintained under these conditions. The lysosomal inhibitors chloroquine and bafilomycin A1 prevented the loss of NRP1 expression, but proteasomal inhibitors had no effect. The hypothesis that NRP1 is degraded by autophagy is supported by the findings that its expression is lost rapidly in response to metabolic stress, prevented with 3-methyladenine and induced by rapamycin. Targeted depletion of NRP2 using small hairpin RNA revealed that NRP2 can function in the absence of NRP1 to mediate endothelial tube formation in hypoxia. Studies aimed at assessing NRP function and targeted therapy in cancer and angiogenesis should consider the impact of metabolic stress.
机译:Neuropilins-1和-2(NRP1和NRP2)充当信号量和血管内皮生长因子的受体。除了对神经系统发育的贡献外,NRP1和NRP2还与血管生成和肿瘤进展有关。考虑到它们对癌症和内皮生物学的重要性及其作为治疗靶标的潜力,尚未解决的重要问题是肿瘤微环境特有的代谢应激条件对其表达和功能的影响。在这里,我们证明缺氧和营养缺乏会刺激内皮细胞和癌细胞中NRP1表达的快速丧失。相反,NRP2表达在这些条件下得以维持。溶酶体抑制剂氯喹和bafilomycin A1阻止了NRP1表达的丧失,但蛋白酶体抑制剂无效。 NRP1被自噬降解的假说得到了以下发现的支持:NRP1的表达响应代谢应激而迅速丧失,被3-甲基腺嘌呤阻止并被雷帕霉素诱导。使用小发夹RNA靶向清除NRP2显示,在缺氧时NRP2可以在不存在NRP1的情况下介导内皮管的形成。旨在评估NRP功能以及针对癌症和血管生成的靶向治疗的研究应考虑代谢应激的影响。

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