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Novel reptilian uncoupling proteins: molecular evolution and gene expression during cold acclimation

机译:新型爬虫类解偶联蛋白:冷驯化过程中的分子进化和基因表达

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摘要

Many animals upregulate metabolism in response to cold. Uncoupling proteins (UCPs) increase proton conductance across the mitochondrial membrane and can thereby alleviate damage from reactive oxygen species that may form as a result of metabolic upregulation. Our aim in this study was to determine whether reptiles (Crocodylus porosus) possess UCP genes. If so, we aimed to place reptilian UCP genes within a phylogenetic context and to determine whether the expression of UCP genes is increased during cold acclimation. We provide the first evidence that UCP2 and UCP3 genes are present in reptiles. Unlike in other vertebrates, UCP2 and UPC3 are expressed in liver and skeletal muscle of the crocodile, and both are upregulated in liver during cold acclimation but not in muscle. We identified two transcripts of UCP3, one of which produces a truncated protein similar to the UCP3S transcript in humans, and the resulting protein lacks the predicted nucleotide-binding regulatory domain. Our molecular phylogeny suggests that uncoupling protein 1 (UCP1) is ancestral and has been lost in archosaurs. In birds, UCP3 may have assumed a similar function as UCP1 in mammals, which has important ramifications for understanding endothermic heat production.
机译:许多动物会因寒冷而上调新陈代谢。解偶联蛋白(UCP)可增加跨线粒体膜的质子传导,从而可以减轻由于代谢上调而可能形成的活性氧的损害。我们在这项研究中的目的是确定爬行动物(Crocodylus porosus)是否具有UCP基因。如果是这样,我们旨在将爬虫类UCP基因置于系统发育背景中,并确定在冷驯化过程中UCP基因的表达是否增加。我们提供了爬行动物中存在UCP2和UCP3基因的第一个证据。与其他脊椎动物不同,UCP2和UPC3在鳄鱼的肝脏和骨骼肌中表达,并且在冷适应过程中在肝脏中均上调,但在肌肉中均不表达。我们鉴定了UCP3的两个转录本,其中一个在人体内产生类似于UCP3S转录本的截短蛋白,并且所得的蛋白质缺乏预测的核苷酸结合调节域。我们的分子系统发育研究表明,解偶联蛋白1(UCP1)是祖先的,已在考古学家中丢失。在鸟类中,UCP3可能承担了与哺乳动物中UCP1类似的功能,这对于理解吸热产生具有重要意义。

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