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开发一类新型线粒体泛醇 - 细胞色素c还原酶结合蛋白(UQCRB)调节剂作为有前景的抗血管生成先导物。

Development of a novel class of mitochondrial ubiquinol-cytochrome c reductase binding protein (UQCRB) modulators as promising antiangiogenic leads.

作者信息

Jung Hye Jin, Cho Misun, Kim Yonghyo, Han Gyoonhee, Kwon Ho Jeong

机构信息

Department of Biotechnology, Translational Research Center for Protein Function Control, College of Life Science and Biotechnology, Yonsei University , Seoul 120-749, Republic of Korea.

出版信息

J Med Chem. 2014 Oct 9;57(19):7990-8. doi: 10.1021/jm500863j. Epub 2014 Sep 22.

Abstract

Recently, we identified a novel therapeutic target and a small molecule for regulating angiogenesis. Our study showed that ubiquinol-cytochrome c reductase binding protein (UQCRB) of the mitochondrial complex III plays a crucial role in hypoxia-induced angiogenesis via mitochondrial reactive oxygen species (ROS) mediated signaling. Herein, we developed new synthetic small molecules that specifically bind to UQCRB and regulate its function. To improve the pharmacological properties of 6-((1-hydroxynaphthalen-4-ylamino)dioxysulfone)-2H-naphtho[1,8-bc]thiophen-2-one (HDNT), a small molecule that targets UQCRB, a series of HDNT derivatives were designed and synthesized. Several derivatives showed a significant increase in hypoxia inducible factor 1α (HIF-1α) inhibitory potency compared to HDNT. The compounds bound to UQCRB and suppressed mitochondrial ROS-mediated hypoxic signaling, resulting in potent inhibition of angiogenesis without inducing cytotoxicity. Notably, one of these new derivatives significantly suppressed tumor growth in a mouse xenograft model. Therefore, these mitochondrial UQCRB modulators could be potential leads for the development of novel antiangiogenic agents.

摘要

最近,我们鉴定出了一个用于调节血管生成的新治疗靶点和一种小分子。我们的研究表明,线粒体复合物III的泛醇-细胞色素c还原酶结合蛋白(UQCRB)通过线粒体活性氧(ROS)介导的信号传导在缺氧诱导的血管生成中起关键作用。在此,我们开发了能特异性结合UQCRB并调节其功能的新型合成小分子。为改善靶向UQCRB的小分子6-((1-羟基萘-4-基氨基)二氧基砜)-2H-萘并[1,8-bc]噻吩-2-酮(HDNT)的药理特性,我们设计并合成了一系列HDNT衍生物。与HDNT相比,几种衍生物的缺氧诱导因子1α(HIF-1α)抑制效力显著提高。这些化合物与UQCRB结合并抑制线粒体ROS介导的缺氧信号传导,从而有效抑制血管生成且不诱导细胞毒性。值得注意的是,其中一种新衍生物在小鼠异种移植模型中显著抑制了肿瘤生长。因此,这些线粒体UQCRB调节剂可能是开发新型抗血管生成药物的潜在先导物。

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