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Oxygen-Dependent Ubiquitination and Degradation of Hypoxia-Inducible Factor Requires Nuclear-Cytoplasmic Trafficking of the von Hippel-Lindau Tumor Suppressor Protein

机译:氧依赖性泛素化和缺氧诱导因子的降解需要von Hippel-Lindau肿瘤抑制蛋白的核细胞质贩运。

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摘要

It is becoming increasingly evident that the degradation of nuclear proteins requires nuclear-cytoplasmic trafficking of both the substrate proteins, as well as the E3 ubiquitin-ligases. Here, we show that nuclear-cytoplasmic trafficking of the von Hippel-Lindau tumor suppressor protein (VHL) is required for oxygen-dependent ubiquitination and degradation of the alpha subunits of hypoxia-inducible factor (HIF-α). VHL engages in a constitutive transcription-sensitive nuclear-cytoplasmic shuttle unaffected by oxygen tension or levels of nuclear substrate HIF-α. Ubiquitinated forms of HIF-α, as well as VHL/ubiquitinated HIF-α complexes, are found solely in the nuclear compartment of normoxic or reoxygenated VHL-competent cells. HIF-α localizes exclusively in the nucleus of hypoxic cells but is exported to the cytoplasm upon reoxygenation. Oxygen-dependent nuclear ubiquitination and nuclear export of HIF-α can be prevented by treatment with an HIF-specific prolyl hydroxylase inhibitor. Treatment with inhibitors of RNA polymerase II activity, which interfere with the ability of VHL to engage in nuclear export, also prevents cytoplasmic accumulation of HIF-α in reoxygenated cells. This caused a marked increase in the HIF-α half-life without affecting its nuclear ubiquitination. We present a model by which VHL-mediated ubiquitination of HIF-α and its subsequent degradation are dependent upon dynamic nuclear-cytoplasmic trafficking of both the E3 ubiquitin-ligase and the nuclear substrate protein.
机译:越来越明显的是,核蛋白的降解需要底物蛋白以及E3泛素连接酶的核质转移。在这里,我们表明,氧依赖泛素化和缺氧诱导因子(HIF-α)的α亚基的降解需要冯Hippel-Lindau肿瘤抑制蛋白(VHL)的核质转移。 VHL参与组成型转录敏感的核胞质穿梭,不受氧张力或核底物HIF-α水平的影响。 HIF-α的泛素化形式以及VHL /泛素化的HIF-α复合物仅在常氧或再充氧的VHL感受态细胞的核室中发现。 HIF-α仅定位在低氧细胞的细胞核中,但在重新充氧后输出到细胞质。 HIF-α脯氨酸羟化酶抑制剂可预防HIF-α的氧依赖性核泛素化和核输出。用RNA聚合酶II活性的抑制剂处理会干扰VHL参与核输出的能力,也可以防止HIF-α在复氧细胞中的细胞质积累。这导致HIF-α半衰期显着增加,而不会影响其核泛素化。我们提出了一个模型,通过该模型,VHL介导的HIF-α泛素化及其后续降解取决于E3泛素连接酶和核底物蛋白的动态核胞质运输。

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