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首页> 外文期刊>Biochemical and Biophysical Research Communications >Molecular cloning of amphioxus uncoupling protein and assessment of its uncoupling activity using a yeast heterologous expression system.
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Molecular cloning of amphioxus uncoupling protein and assessment of its uncoupling activity using a yeast heterologous expression system.

机译:双歧杆菌解偶联蛋白的分子克隆和使用酵母异源表达系统评估其解偶联活性。

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The present study describes the molecular cloning of a novel cDNA fragment from amphioxus (Branchiostoma belcheri) encoding a 343-amino acid protein that is highly homologous to human uncoupling proteins (UCP), this protein is therefore named amphioxus UCP. This amphioxus UCP shares more homology with and is phylogenetically more related to mammalian UCP2 as compared with UCP1. To further assess the functional similarity of amphioxus UCP to mammalian UCP1 and -2, the amphioxus UCP, rat UCP1, and human UCP2 were separately expressed in Saccharomyces cerevisiae, and the recombinant yeast mitochondria were isolated and assayed for the state 4 respiration rate and proton leak, using pYES2 empty vector as the control. UCP1 increased the state 4 respiration rate by 2.8-fold, and the uncoupling activity was strongly inhibited by GDP, while UCP2 and amphioxus UCP only increased the state 4 respiration rate by 1.5-fold and 1.7-fold in a GDP-insensitive manner, moreover, the proton leak kinetics of amphioxus UCP was very similar to UCP2, but much different from UCP1. In conclusion, the amphioxus UCP has a mild, unregulated uncoupling activity in the yeast system, which resembles mammalian UCP2, but not UCP1.
机译:本研究描述了从文昌鱼(Branchiostoma belcheri)编码343个氨基酸的蛋白的新cDNA片段的分子克隆,该蛋白与人解偶联蛋白(UCP)高度同源,因此该蛋白被命名为文昌鱼UCP。与UCP1相比,这种两栖类UCP与哺乳动物UCP2具有更多的同源性,并且在系统发育上也与之相关性更高。为了进一步评估两栖类UCP与哺乳动物UCP1和-2的功能相似性,在酿酒酵母中分别表达了两栖类UCP,大鼠UCP1和人UCP2,并分离了重组酵母线粒体并分析了其状态4呼吸速率和质子使用pYES2空向量作为对照进行泄漏。 UCP1使状态4的呼吸速率增加了2.8倍,并且去耦合活性受到GDP的强烈抑制,而UCP2和两栖类UCP仅以对GDP不敏感的方式使状态4的呼吸速率增加了1.5倍和1.7倍。 ,两栖类UCP的质子泄漏动力学与UCP2非常相似,但与UCP1有很大不同。总之,两栖类UCP在酵母系统中具有温和的,不受调节的解偶联活性,类似于哺乳动物的UCP2,但与UCP1相似。

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