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首页> 外文期刊>Scientific reports. >Mitochondrial MUL1 E3 ubiquitin ligase regulates Hypoxia Inducible Factor (HIF-1α) and metabolic reprogramming by modulating the UBXN7 cofactor protein
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Mitochondrial MUL1 E3 ubiquitin ligase regulates Hypoxia Inducible Factor (HIF-1α) and metabolic reprogramming by modulating the UBXN7 cofactor protein

机译:线粒体MUL1 E3泛素连接酶通过调节UBXN7 Cofactor蛋白来调节缺氧诱导因子(HIF-1α)和代谢重编程

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MUL1 is a multifunctional E3 ubiquitin ligase anchored in the outer mitochondrial membrane with its RING finger domain facing the cytoplasm. MUL1 participates in various biological pathways involved in apoptosis, mitochondrial dynamics, and innate immune response. The unique topology of MUL1 enables it to "sense" mitochondrial stress in the intermembrane mitochondrial space and convey these signals through the ubiquitination of specific cytoplasmic substrates. We have identified UBXN7, the cofactor protein of the CRL2supVHL/sup ligase complex, as a specific substrate of MUL1 ligase. CRL2supVHL/sup ligase complex regulates HIF-1α protein levels under aerobic (normoxia) or anaerobic (hypoxia) conditions. Inactivation of MUL1 ligase leads to accumulation of UBXN7, with concomitant increase in HIF-1α protein levels, reduction in oxidative phosphorylation, and increased glycolysis. We describe a novel pathway that originates in the mitochondria and operates upstream of the CRL2supVHL/sup ligase complex. Furthermore, we delineate the mechanism by which the mitochondria, through MUL1 ligase, can inhibit the CRL2supVHL/sup complex leading to high HIF-1α protein levels and a metabolic shift to glycolysis under normoxic conditions.
机译:Mul1是锚定在外部线粒体膜中的多功能E3泛素连接酶,其无齿面域面向细胞质。 MUL1参与凋亡,线粒体动力学和先天免疫应答的各种生物途径。 Mul1的独特拓扑使其能够在嵌入线粒体空间中“感测”线粒体应力,并通过特异性细胞质衬底的泛素传达这些信号。我们已经鉴定了UBXN7,CRL2 VHL 连接酶复合物的辅因子蛋白,作为MUL1连接酶的特定基材。 CRL2 vhl 连接酶复合物调节有氧(常氧)或厌氧(缺氧)条件下的HIF-1α蛋白水平。 Mul1连接酶的灭活导致UBXN7的积累,伴随HIF-1α蛋白水平,氧化磷酸化降低以及糖酵解的增加。我们描述了一种新的途径,起源于线粒体,并在CRL2 Vhl 连接酶复合物上游操作。此外,我们描绘了线粒体,通过Mul1连接酶的机制可以抑制CRL2 VHL 复合物,其导致高HIF-1α蛋白水平和在常氧条件下对糖酵解的代谢移位。

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