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酪氨酸激酶c-Src参与由NADPH氧化酶-1介导的活性氧生成的调节。

The involvement of the tyrosine kinase c-Src in the regulation of reactive oxygen species generation mediated by NADPH oxidase-1.

作者信息

Gianni Davide, Bohl Ben, Courtneidge Sara A, Bokoch Gary M

机构信息

Departments of Immunology and Cell Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Mol Biol Cell. 2008 Jul;19(7):2984-94. doi: 10.1091/mbc.e08-02-0138. Epub 2008 May 7.

DOI:10.1091/mbc.e08-02-0138
PMID:18463161
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2441655/
Abstract

NADPH oxidase (Nox) family enzymes are one of the main sources of cellular reactive oxygen species (ROS), which have been shown to function as second messenger molecules. To date, seven members of this family have been reported, including Nox1-5 and Duox1 and -2. With the exception of Nox2, the regulation of the Nox enzymes is still poorly understood. Nox1 is highly expressed in the colon, and it requires two cytosolic regulators, NoxO1 and NoxA1, as well as the binding of Rac1 GTPase, for its activity. In this study, we investigate the role of the tyrosine kinase c-Src in the regulation of ROS formation by Nox1. We show that c-Src induces Nox1-mediated ROS generation in the HT29 human colon carcinoma cell line through a Rac-dependent mechanism. Treatment of HT29 cells with the Src inhibitor PP2, expression of a kinase-inactive form of c-Src, and c-Src depletion by small interfering RNA (siRNA) reduce both ROS generation and the levels of active Rac1. This is associated with decreased Src-mediated phosphorylation and activation of the Rac1-guanine nucleotide exchange factor Vav2. Consistent with this, Vav2 siRNA that specifically reduces endogenous Vav2 protein is able to dramatically decrease Nox1-dependent ROS generation and abolish c-Src-induced Nox1 activity. Together, these results establish c-Src as an important regulator of Nox1 activity, and they may provide insight into the mechanisms of tumor formation in colon cancers.

摘要

NADPH氧化酶(Nox)家族酶是细胞活性氧(ROS)的主要来源之一,已被证明可作为第二信使分子发挥作用。迄今为止,该家族已报道了七个成员,包括Nox1 - 5以及Duox1和Duox2。除了Nox2外,Nox酶的调节机制仍知之甚少。Nox1在结肠中高度表达,其活性需要两种胞质调节因子NoxO1和NoxA1以及Rac1 GTP酶的结合。在本研究中,我们研究了酪氨酸激酶c-Src在Nox1调节ROS形成中的作用。我们发现c-Src通过Rac依赖性机制在HT29人结肠癌细胞系中诱导Nox1介导的ROS生成。用Src抑制剂PP2处理HT29细胞、表达激酶失活形式的c-Src以及通过小干扰RNA(siRNA)耗尽c-Src均可降低ROS生成和活性Rac1的水平。这与Src介导的Rac1鸟嘌呤核苷酸交换因子Vav2的磷酸化和激活减少有关。与此一致的是,特异性降低内源性Vav2蛋白的Vav2 siRNA能够显著降低Nox1依赖性ROS生成并消除c-Src诱导的Nox1活性。总之,这些结果确立了c-Src作为Nox1活性的重要调节因子,并且可能为深入了解结肠癌的肿瘤形成机制提供线索。

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