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U19/Eaf2与希佩尔-林道蛋白结合并使其稳定。

U19/Eaf2 binds to and stabilizes von hippel-lindau protein.

作者信息

Xiao Wuhan, Ai Junkui, Habermacher Geoffrey, Volpert Olga, Yang Ximing, Zhang Ai-Yuan, Hahn Junghyun, Cai Xiaoyan, Wang Zhou

机构信息

Department of Urology and University of Pittsburgh Cancer Institute, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

出版信息

Cancer Res. 2009 Mar 15;69(6):2599-606. doi: 10.1158/0008-5472.CAN-08-2595. Epub 2009 Mar 3.

Abstract

Studies have firmly established a key regulatory role for the tumor suppressor pVHL in the regulation of the vascular system and normal spermatogenesis. Here, we report that knockout of the newly identified tumor suppressor U19/Eaf2 also caused vascular system abnormalities and aspermatogenesis, suggesting a potential link between U19/Eaf2 and pVHL. Coimmunoprecipitation and in vitro binding assays showed an association between U19/Eaf2 and pVHL, whereas deletion mutagenesis revealed the requirement of the NH(2) terminus of U19/Eaf2 and both the alpha and beta domains of pVHL for this binding. U19/Eaf2 stabilizes pVHL, as shown by protein stability and pulse-chase studies. Testes and mouse embryonic fibroblasts (MEF) derived from U19/Eaf2 knockout mice expressed reduced levels of pVHL, indicating that full in vivo expression of pVHL indeed requires U19/Eaf2. As expected, U19/Eaf2 knockout MEF cells exhibited an increased level and activity of hypoxia-inducible factor 1alpha (HIF1alpha), a protein typically regulated via a pVHL-mediated degradation pathway. Furthermore, angiogenesis in a Matrigel plug assay was significantly increased in U19/Eaf2 knockout mice. The above observations argue that U19/Eaf2 can modulate HIF1alpha and angiogenesis, possibly via direct binding and stabilization of pVHL.

摘要

研究已确凿证实肿瘤抑制因子pVHL在血管系统调节和正常精子发生过程中起关键调节作用。在此,我们报告新鉴定出的肿瘤抑制因子U19/Eaf2的敲除也导致了血管系统异常和无精子发生,提示U19/Eaf2与pVHL之间可能存在联系。免疫共沉淀和体外结合试验表明U19/Eaf2与pVHL存在关联,而缺失诱变揭示了U19/Eaf2的NH(2)末端以及pVHL的α和β结构域对于这种结合的必要性。蛋白质稳定性和脉冲追踪研究表明,U19/Eaf2可使pVHL稳定。源自U19/Eaf2敲除小鼠的睾丸和小鼠胚胎成纤维细胞(MEF)中pVHL表达水平降低,表明pVHL在体内的完整表达确实需要U19/Eaf2。正如预期的那样,U19/Eaf2敲除的MEF细胞中缺氧诱导因子1α(HIF1α)的水平和活性增加,HIF1α是一种通常通过pVHL介导的降解途径进行调节的蛋白质。此外,在基质胶栓试验中,U19/Eaf2敲除小鼠的血管生成显著增加。上述观察结果表明,U19/Eaf2可能通过直接结合和稳定pVHL来调节HIF1α和血管生成。

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