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A mutation in the mitochondrial protein UQCRB promotes angiogenesis through the generation of mitochondrial reactive oxygen species

机译:线粒体蛋白质UQCRB中的突变通过产生线粒体反应性氧物种促进血管生成

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Ubiquinol-cytocbrome c reductase binding protein (UQCRB) is one of the subunits of mitochondrial complex III and is a target protein of the natural anti-angiogenic small molecule terpestacin. Previously, the biological role of UQCRB was thought to be limited to the maintenance of complex III. However, the identification and validation of UQCRB as a target protein of terpestacin enabled the role of UQCRB in oxygen sensing and angiogenesis to be elucidated. To explore the biological role of this protein further, UQCRB mutant stable cell lines were generated on the basis of a human case report. We demonstrated that these cell lines exhibited glycolytic and pro-angiogenic activities via mitochondrial reactive oxygen species (mROS)-mediated HIF1 signal transduction. Furthermore, a morphological abnormality in mitochondria was detected in UQCRB mutant stable cell lines. In addition, the proliferative effect of the UQCRB mutants was significantly regulated by the UQCRB inhibitors terpestacin and A1938. Collectively, these results provide a molecular basis for UQCRB-related biological processes and reveal potential key roles of UQCRB in angiogenesis and mitochondria-mediated metabolic disorders. (C) 2014 Elsevier Inc. All rights reserved.
机译:Ubiquinol-Cytocbrome C还原酶结合蛋白(UQCRB)是线粒体复合物III的亚基之一,是天然抗血管生成小分子Terpestacin的靶蛋白。以前,uqCRB的生物学作用被认为仅限于复杂III的维持。然而,作为Terpestacin的靶蛋白的UQCRB的鉴定和验证使UQCRB在氧气感测和血管生成中的作用得到阐明。为了进一步探讨该蛋白质的生物学作用,在人类病例报告的基础上产生UQCRB突变体稳定的细胞系。我们证明,这些细胞系通过线粒体反应性氧物质(MRO)介导的HIF1信号转导。此外,在UQCRB突变体稳定的细胞系中检测到线粒体的形态异常。此外,UQCRB抑制剂Terpestacin和A1938的UQCRB突变体的增殖效应显着调节。总的来说,这些结果为UQCRB相关的生物学过程提供了分子基础,并揭示了UQCRB在血管生成和线粒体介导的代谢障碍中的潜在关键作用。 (c)2014年elsevier Inc.保留所有权利。

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