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Ran调节的pVHL核质转运在缺氧心肌细胞中对微管稳定性介导的HIF-1α调控中的作用

Role of Ran-regulated nuclear-cytoplasmic trafficking of pVHL in the regulation of microtubular stability-mediated HIF-1α in hypoxic cardiomyocytes.

作者信息

Jiang Xupin, Zhang Dongxia, Zhang Hengshu, Huang Yuesheng, Teng Miao

机构信息

1] Institute of Burn Research, State Key Laboratory of Trauma, Burns and Combined Injury, Southwest Hospital, The Third Military Medical University, Chongqing, China [2] Department of Burn and Plastic Surgery, The First Affiliated Hospital of Chongqing Medical University, Chongqing, China.

Institute of Burn Research, State Key Laboratory of Trauma, Burns and Combined Injury, Southwest Hospital, The Third Military Medical University, Chongqing, China.

出版信息

Sci Rep. 2015 Mar 17;5:9193. doi: 10.1038/srep09193.

Abstract

Our previous study suggested that microtubule network alteration affects the process of glycolysis in cardiomyocytes (CMs) via the regulation of hypoxia-inducible factor (HIF)-1α during the early stages of hypoxia. However, little is known regarding the underlying mechanisms of microtubule network alteration-induced changes of HIF-1α. The von Hippel-Lindau tumor suppressor protein (pVHL) has been shown to mediate the ubiquitination of HIF-1α in the nuclear compartment prior to HIF-1α exportation to the cytoplasm, and pVHL dynamic nuclear-cytoplasmic trafficking is indicated to be involved in the process of HIF-1α degradation. In this study, by administering different microtubule-stabilizing and -depolymerizing interventions, we demonstrated that microtubule stabilization promoted pVHL nuclear export and drove the translocation of pVHL to the cytoplasm, while microtubule disruption prevented pVHL nuclear export in hypoxic CMs. Moreover, the ratio between nuclear and cytoplasmic pVHL was associated with HIF-1α regulation. Importantly, microtubule network alteration also affected the subcellular localization of Ran, which was involved in the regulation of pVHL nuclear-cytoplasmic trafficking. The above results suggest that the subcellular translocation of pVHL plays an important role in microtubular structure alteration-induced HIF-1α regulation. Interestingly, Ran is involved in the process of pVHL nuclear-cytoplasmic trafficking following microtubule network alteration in hypoxic CMs.

摘要

我们之前的研究表明,在缺氧早期,微管网络改变通过调节缺氧诱导因子(HIF)-1α影响心肌细胞(CMs)的糖酵解过程。然而,关于微管网络改变诱导HIF-1α变化的潜在机制知之甚少。von Hippel-Lindau肿瘤抑制蛋白(pVHL)已被证明在HIF-1α输出到细胞质之前介导其在核内的泛素化,并且pVHL的动态核质转运被认为参与HIF-1α的降解过程。在本研究中,通过给予不同的微管稳定和去聚合干预措施,我们证明微管稳定促进pVHL核输出并驱动pVHL转运至细胞质,而微管破坏则阻止缺氧CMs中pVHL的核输出。此外,核内与细胞质中pVHL的比例与HIF-1α调节相关。重要的是,微管网络改变也影响了参与pVHL核质转运调节的Ran的亚细胞定位。上述结果表明,pVHL的亚细胞转运在微管结构改变诱导的HIF-1α调节中起重要作用。有趣的是,Ran参与缺氧CMs中微管网络改变后pVHL的核质转运过程。

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