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人源聚集蛋白的过表达增强了果蝇的抗应激能力并延长了其寿命。

Over-expression of human clusterin increases stress resistance and extends lifespan in Drosophila melanogaster.

机构信息

Department of Pharmacology, College of Medicine, Korea University, 126-1 Anam-Dong 5 Ga, Seongbuk-Gu, Seoul 136-705, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2012 Apr 20;420(4):851-6. doi: 10.1016/j.bbrc.2012.03.087. Epub 2012 Mar 24.

Abstract

Clusterin is a disulfide-linked heterodimeric glycoprotein that has been implicated in a variety of biological processes. Its expression has been shown to be elevated during cellular senescence and normal aging, but it is uncertain whether clusterin protects against aging or whether its expression is a consequence of aging. To investigate the functions of clusterin during organismal aging, we established transgenic Drosophila alleles to induce the expression of the secretory form of human clusterin (hClu(S)) using the Gal4/UAS system. hClu(S) protein (~60 kDa) was detected in both adult homogenates and larval hemolymphs of flies ubiquitously overexpressing hClu(S) (da-Gal4>UAS-hClu(S)) and in motoneurons (D42-Gal4>UAS-hClu(S)). Interestingly, the mean lifespans of these hClu(S)-overexpressing flies were significantly greater than those of control flies that exhibited no hClu(S) induction. hClu(S)-overexpressing flies also showed significantly greater tolerance to heat shock, wet starvation, and oxidative stress. Furthermore, amounts of reactive oxygen species (ROS) in whole bodies were significantly lower in hClu(S)-overexpressing flies. In addition, clusterin was found to prevent the inactivation of glutamine synthetase (GS) by metal-catalyzed oxidation (MCO) in vitro, and this protection was only supported by thiol-reducing equivalents, such as, DTT or GSH, and not by ascorbate (a non-thiol MCO system). Furthermore, this protection against GS inactivation by clusterin was abolished by reacting clusterin with N-ethylmaleimide, a sulfhydryl group-modifying agent. Taken together, these results suggest that a disulfide-linked form of clusterin functions as an antioxidant protein via its cysteine sulfhydryl groups to reduce ROS levels and delay the organismal aging in fruit flies.

摘要

簇集蛋白是一种二硫键连接的异源二聚体糖蛋白,与多种生物学过程有关。其表达在细胞衰老和正常老化过程中升高,但尚不清楚簇集蛋白是否能抵抗衰老,还是其表达是衰老的结果。为了研究簇集蛋白在机体衰老过程中的功能,我们利用 Gal4/UAS 系统建立了转基因果蝇品系,诱导人簇集蛋白(hClu(S))的分泌形式表达。在广泛表达 hClu(S)的果蝇成虫匀浆和幼虫血淋巴中(da-Gal4>UAS-hClu(S))以及运动神经元中(D42-Gal4>UAS-hClu(S))都检测到 hClu(S)蛋白(~60 kDa)。有趣的是,这些过表达 hClu(S)的果蝇的平均寿命明显长于未诱导 hClu(S)表达的对照果蝇。过表达 hClu(S)的果蝇对热休克、湿饥饿和氧化应激的耐受性也显著提高。此外,hClu(S)过表达果蝇的全身活性氧(ROS)含量明显降低。另外,发现簇集蛋白可防止谷氨酰胺合成酶(GS)在体外被金属催化氧化(MCO)失活,这种保护仅由巯基还原当量(如 DTT 或 GSH)支持,而不被抗坏血酸(一种非巯基 MCO 系统)支持。此外,用 N-乙基马来酰亚胺(一种巯基修饰剂)与簇集蛋白反应,会使簇集蛋白对 GS 失活的保护作用丧失。综上所述,这些结果表明,二硫键连接的簇集蛋白通过其半胱氨酸巯基作为抗氧化蛋白发挥作用,降低 ROS 水平并延缓果蝇的机体衰老。

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