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微管稳定性通过缺氧心肌细胞中的 p38/MAPK 通路影响 pVHL 介导的 HIF-1alpha 调节。

Microtubular stability affects pVHL-mediated regulation of HIF-1alpha via the p38/MAPK pathway in hypoxic cardiomyocytes.

机构信息

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

PLoS One. 2012;7(4):e35017. doi: 10.1371/journal.pone.0035017. Epub 2012 Apr 10.

Abstract

BACKGROUND

Our previous research found that structural changes of the microtubule network influence glycolysis in cardiomyocytes by regulating the hypoxia-inducible factor (HIF)-1α during the early stages of hypoxia. However, little is known about the underlying regulatory mechanism of the changes of HIF-1α caused by microtubule network alternation. The von Hippel-Lindau tumor suppressor protein (pVHL), as a ubiquitin ligase, is best understood as a negative regulator of HIF-1α.

METHODOLOGY/PRINCIPAL FINDINGS: In primary rat cardiomyocytes and H9c2 cardiac cells, microtubule-stabilization was achieved by pretreating with paclitaxel or transfection of microtubule-associated protein 4 (MAP4) overexpression plasmids and microtubule-depolymerization was achieved by pretreating with colchicine or transfection of MAP4 siRNA before hypoxia treatment. Recombinant adenovirus vectors for overexpressing pVHL or silencing of pVHL expression were constructed and transfected in primary rat cardiomyocytes and H9c2 cells. With different microtubule-stabilizing and -depolymerizing treaments, we demonstrated that the protein levels of HIF-1α were down-regulated through overexpression of pVHL and were up-regulated through knockdown of pVHL in hypoxic cardiomyocytes. Importantly, microtubular structure breakdown activated p38/MAPK pathway, accompanied with the upregulation of pVHL. In coincidence, we found that SB203580, a p38/MAPK inhibitor decreased pVHL while MKK6 (Glu) overexpression increased pVHL in the microtubule network altered-hypoxic cardiomyocytes and H9c2 cells.

CONCLUSIONS/SIGNIFICANCE: This study suggests that pVHL plays an important role in the regulation of HIF-1α caused by the changes of microtubular structure and the p38/MAPK pathway participates in the process of pVHL change following microtubule network alteration in hypoxic cardiomyocytes.

摘要

背景

我们之前的研究发现,微管网络的结构变化通过在缺氧早期调节缺氧诱导因子 (HIF)-1α 来影响心肌细胞中的糖酵解。然而,对于微管网络改变引起的 HIF-1α 变化的潜在调节机制知之甚少。作为泛素连接酶的 von Hippel-Lindau 肿瘤抑制蛋白 (pVHL) 被认为是 HIF-1α 的负调节因子。

方法/主要发现:在原代大鼠心肌细胞和 H9c2 心脏细胞中,用紫杉醇预处理实现微管稳定,或转染微管相关蛋白 4 (MAP4) 过表达质粒实现微管稳定,用秋水仙碱预处理或转染 MAP4 siRNA 实现微管解聚,然后进行缺氧处理。构建了用于过表达 pVHL 或沉默 pVHL 表达的重组腺病毒载体,并在原代大鼠心肌细胞和 H9c2 细胞中转染。通过不同的微管稳定和解聚处理,我们证明在缺氧心肌细胞中,通过过表达 pVHL 可以下调 HIF-1α 的蛋白水平,通过沉默 pVHL 可以上调 HIF-1α 的蛋白水平。重要的是,微管结构的破坏激活了 p38/MAPK 通路,伴随着 pVHL 的上调。巧合的是,我们发现 p38/MAPK 抑制剂 SB203580 降低了微管网络改变的缺氧心肌细胞和 H9c2 细胞中的 pVHL,而 MKK6 (Glu) 过表达增加了微管网络改变的缺氧心肌细胞和 H9c2 细胞中的 pVHL。

结论/意义:本研究表明,pVHL 在微管结构变化引起的 HIF-1α 调节中起重要作用,p38/MAPK 通路参与了微管网络改变后 pVHL 变化的过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/170b/3323643/9ad09149e103/pone.0035017.g001.jpg

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