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凋亡诱导因子抑制化学应激诱导的细胞凋亡并维持肿瘤细胞的转化状态。

AIF suppresses chemical stress-induced apoptosis and maintains the transformed state of tumor cells.

作者信息

Urbano Alexander, Lakshmanan Umayal, Choo Poh Heok, Kwan Jair Chau, Ng Poh Yong, Guo Ke, Dhakshinamoorthy Saravanakumar, Porter Alan

机构信息

Cell Death and Human Disease Group, Institute of Molecular and Cell Biology, Proteos, Republic of Singapore.

出版信息

EMBO J. 2005 Aug 3;24(15):2815-26. doi: 10.1038/sj.emboj.7600746. Epub 2005 Jul 7.

Abstract

Apoptosis-inducing factor (AIF) exhibits reactive oxygen species (ROS)-generating NADH oxidase activity of unknown significance, which is dispensable for apoptosis. We knocked out the aif gene in two human colon carcinoma cell lines that displayed lower mitochondrial complex I oxidoreductase activity and produced less ROS, but showed increased sensitivity to peroxide- or drug-induced apoptosis. AIF knockout cells failed to form tumors in athymic mice or grow in soft agar. Only AIF with intact NADH oxidase activity restored complex I activity and anchorage-independent growth of aif knockout cells, and induced aif-transfected mouse NIH3T3 cells to form foci. AIF knockdown in different carcinoma cell types resulted in lower superoxide levels, enhanced apoptosis sensitivity and loss of tumorigenicity. Antioxidants sensitized AIF-expressing cells to apoptosis, but had no effect on tumorigenicity. In summary, AIF-mediated resistance to chemical stress involves ROS and probably also mitochondrial complex I. AIF maintains the transformed state of colon cancer cells through its NADH oxidase activity, by mechanisms that involve complex I function. On both counts, AIF represents a novel type of cancer drug target.

摘要

凋亡诱导因子(AIF)具有产生活性氧(ROS)的NADH氧化酶活性,其意义尚不清楚,且该活性对于细胞凋亡并非必需。我们在两个人类结肠癌细胞系中敲除了aif基因,这两个细胞系显示出线粒体复合物I氧化还原酶活性较低,产生的ROS较少,但对过氧化物或药物诱导的细胞凋亡敏感性增加。AIF基因敲除细胞在无胸腺小鼠中无法形成肿瘤,也不能在软琼脂中生长。只有具有完整NADH氧化酶活性的AIF才能恢复aif基因敲除细胞的复合物I活性和不依赖贴壁的生长能力,并诱导转染了aif基因的小鼠NIH3T3细胞形成集落。在不同类型的癌细胞中敲低AIF会导致超氧化物水平降低、凋亡敏感性增强和致瘤性丧失。抗氧化剂使表达AIF的细胞对凋亡敏感,但对致瘤性没有影响。总之,AIF介导的对化学应激的抗性涉及ROS,可能还涉及线粒体复合物I。AIF通过其NADH氧化酶活性,通过涉及复合物I功能的机制维持结肠癌细胞的转化状态。在这两方面,AIF都代表了一种新型的癌症药物靶点。

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