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首页> 外文期刊>Journal of Experimental Botany >Characterization of the plant uncoupling protein, SrUCPA, expressed in spadix mitochondria of the thermogenic skunk cabbage
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Characterization of the plant uncoupling protein, SrUCPA, expressed in spadix mitochondria of the thermogenic skunk cabbage

机译:植物解偶联蛋白SrUCPA的特性在产热臭鼬的茎线虫线粒体中表达

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In mammalian brown adipose tissue, uncoupling protein 1 (UCP1), an integral inner mitochondrial membrane protein, triggers a proton leak and converts the energy generated by the resulting electron flow into heat. Although the recent finding of plant UCPs in non-thermogenic tissues has questioned their involvement in thermogenesis, there are few studies of plant UCPs in thermogenic tissues. Therefore, in this work, two cloned UCP cDNAs, SrUCPA and SrUCPB, isolated from the thermogenic spadix of skunk cabbage, were analysed. SrUCPA, not SrUCPB, was identified as the major uncoupling protein, and it was found to be integrated into the inner mitochondrial membrane. Topological analyses indicate that the 1st and 2nd intra-matrix loops are sensitive to trypsin treatment, but the 3rd intra-matrix loop is resistant to it. Using spadix mitochondria, the uncoupling activity of SrUCPA was examined. Although SrUCPA transcripts were constitutively expressed in various tissues irrespective of thermogenic stage, the SrUCPA protein was detected only in the thermogenic tissue or stage. On the other hand, both gene and protein expression for another heat-generating protein, SrAOX, were increased specifically in the thermogenic tissue or stage. Quantitative immunoblot analysis revealed that SrUCPA was an abundant protein in spadix mitochondria, accounting for about 3% of the total mitochondrial protein in the spadix. The results suggest that specific co-expression of SrUCPA and SrAOX protein in the thermogenic tissue or stage, as well as the high expression of SrUCPA protein in spadix mitochondria, may play a role in thermogenesis of skunk cabbage.
机译:在哺乳动物棕色脂肪组织中,解偶联蛋白1(UCP1)是线粒体内必不可少的蛋白,它会触发质子泄漏,并将产生的电子流产生的能量转化为热量。尽管最近在非热原性组织中发现植物UCP质疑了其参与生热作用,但鲜有在热源性组织中研究植物UCP的研究。因此,在这项工作中,分析了从臭鼬白菜的产热茎秆中分离出的两个克隆的UCP cDNA SrUCPA和SrUCPB。 SrUCPA,而不是SrUCPB,被鉴定为主要的解偶联蛋白,并且发现它已整合到线粒体内膜中。拓扑分析表明,第一个和第二个矩阵内环路对胰蛋白酶治疗敏感,但第三个矩阵内环路对此具有抵抗力。使用茎秆线粒体,检查了SrUCPA的解偶联活性。尽管SrUCPA转录本在各个组织中组成性表达,而与热生成阶段无关,但仅在热生成组织或阶段中检测到SrUCPA蛋白。另一方面,另一种发热蛋白SrAOX的基因和蛋白表达在生热组织或生长期中均特异性增加。定量免疫印迹分析表明,SrUCPA是茎秆线粒体中的一种丰富蛋白质,约占茎秆线粒体蛋白质总量的3%。结果表明,SrUCPA和SrAOX蛋白在生热组织或阶段的特异性共表达,以及茎秆线粒体中SrUCPA蛋白的高表达,可能在臭cabbage菜的生热中起作用。

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