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HIF-1alpha and EPAS ubiquitination mediated by the VHL tumour suppressor involves flexibility in the ubiquitination mechanism, similar to other RING E3 ligases

机译:由VHL肿瘤抑制因子介导的HIF-1α和Epas泛素化涉及泛素化机制的灵活性,类似于其他RING E3连接酶

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摘要

Hypoxia-inducible factor 1alpha (HIF-1alpha) degradation under normoxia is critical to modulating vascular growth. This degradation is mediated during normoxia by the von Hippel–Lindau tumour suppressor protein (VHL)-E3 ubiquitin ligase in partnership with the E2 enzyme UbcH5. In current models of the functionally similar Skp1, cullin, F-box (SCF)-E3 ligase, the E3 binds the target protein and the E2 catalyses ubiquitin transfer to lysines in an appropriately positioned domain. In the present study, we report that for efficient ubiquitination of HIF-1alpha to occur, three conserved lysines are required in both the HIF-1alpha and endothelial Per-ARNT-Sim domain protein (EPAS) sequences. The site of ubiquitin attachment via UbcH5 was mapped, and is shown to involve three HIF-1alpha lysines, K532, K538 and K547, and the same aligned lysines in EPAS. Only one of these lysines need to be intact for full ubiquitination to occur, analogous to the mechanism of Sic1 ubiquitination by the SCF/Cdc34 complex and further strengthening the functional link between the VHL and SCF-E3 ubiquitin ligases. We also report that lysines can be moved around the HIF-1alpha sequence with only minor losses in ubiquitination efficiency, thus suggesting HIF-1alpha and EPAS regulation by hypoxia depends primarily on an interaction with VHL per se, rather than the highly specific positioning of flanking lysine acceptors.
机译:常氧下的缺氧诱导因子1α(HIF-1alpha)降解对于调节血管生长至关重要。在正常氧血症期间,这种降解是由von Hippel-Lindau肿瘤抑制蛋白(VHL)-E3泛素连接酶与E2酶UbcH5共同介导的。在功能相似的Skp1,cullin,F-box(SCF)-E3连接酶的当前模型中,E3结合目标蛋白,而E2则在适当定位的域中催化遍在蛋白向赖氨酸的转移。在本研究中,我们报告为发生HIF-1alpha的有效泛素化,HIF-1alpha和内皮Per-ARNT-Sim域蛋白(EPAS)序列中都需要三个保守的赖氨酸。绘制了通过UbcH5附着遍在蛋白的位点,结果表明它涉及三个HIF-1α赖氨酸,K532,K538和K547,以及EPAS中相同的对齐赖氨酸。这些赖氨酸中只有一个赖氨酸完整无缺即可发生完全泛素化,这类似于SCF / Cdc34复合物Sic1泛素化的机制,并进一步加强了VHL和SCF-E3泛素连接酶之间的功能联系。我们还报告说,赖氨酸可以在HIF-1alpha序列周围移动,而泛素化效率只有很小的损失,因此表明低氧对HIF-1alpha和EPAS的调节主要取决于与VHL本身的相互作用,而不是侧翼的高度特异性定位赖氨酸受体。

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    Paltoglou, S.; Roberts, B.;

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  • 年度 2007
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