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Molecular evolution of uncoupling proteins and implications for brain function

机译:解耦蛋白的分子演变与脑功能的影响

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摘要

Uncoupling proteins (UCPs) belong to the mitochondrial anion carrier superfamily and catalyze important metabolic functions at the mitochondrial inner membrane. While the thermogenic role of UCP1 in brown fat of eutherian mammals is well established, the molecular functions of UCP1 in ectothermic vertebrates and of other UCP paralogs remain less clear. Here, we critically discuss the existence of brain UCPs and their potential roles. Applying phylogenetic classification of novel UCPs, we summarize the evidence for brain UCP1 among vertebrates, the role of UCP2 in specific brain areas, and the existence of brain-specific UCPs. The phylogenetic analyses and discussion on functional data should alert the scientific community that the molecular function of so-called UCP1 homologues is by far not clarified and possibly relates to neither thermogenesis nor mitochondrial uncoupling.
机译:解耦蛋白(UCP)属于线粒体阴离子载体超法并催化线粒体内膜的重要代谢功能。 虽然UCP1在Eutherian哺乳动物棕色脂肪中的UCP1在棕色脂肪中的产物作用很好,但UCP1在侧疗脊椎动物和其他UCP伞状物中的分子功能仍然不太清楚。 在这里,我们批判性地讨论了脑UCP的存在及其潜在的角色。 应用新型UCP的系统发育分类,总结了脊椎动物中脑UCP1的证据,UCP2在特定脑区域中的作用以及脑特异性UCP的存在。 功能数据的系统发育分析和讨论应提醒科学界,所谓的UCP1同源物的分子功能是尚未澄清的,并且可能与热生成和线粒体解耦无澄清。

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