首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Functional characterization of UCP1 in mammalian HEK293 cells excludes mitochondrial uncoupling artefacts and reveals no contribution to basal proton leak
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Functional characterization of UCP1 in mammalian HEK293 cells excludes mitochondrial uncoupling artefacts and reveals no contribution to basal proton leak

机译:哺乳动物HEK293细胞中UCP1的功能表征不包括线粒体解偶联伪像,并且不显示对基础质子泄漏的贡献

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Mechanistic studies on uncoupling proteins (UCPs) not only are important to identify their cellular function but also are pivotal to identify potential drug targets to manipulate mitochondrial energy transduction. So far, functional and comparative studies of uncoupling proteins in their native environment are hampered by different mitochondrial, cellular and genetic backgrounds. Artificial systems such as yeast ectopically expressing UCPs or liposomes with reconstituted UCPs were employed to address crucial mechanistic questions but these systems also produced inconsistencies with results from native mitochondria. We here introduce a novel mammalian cell culture system (Human Embryonic Kidney 293 - HEK293) to study UCP1 function. Stably transfected HEK293 cell lines were derived that contain mouse UCP1 at concentrations comparable to tissue mitochondria. In this cell-based test system UCP1 displays native functional behaviour as it can be activated with fatty acids (palmitate) and inhibited with purine nucleotides guanosine-diphosphate (GDP). The catalytic centre activity of the UCP1 homodimer in HEK293 is comparable to activities in brown adipose tissue supporting functionality of UCP1. Importantly, at higher protein levels than in yeast mitochondria, UCP1 in HEK293 cell mitochondria is fully inhibitable and does not contribute to basal proton conductance, thereby emphasizing the requirement of UCP1 activation for therapeutic purposes. These findings and resulting analysis on UCP1 characteristics demonstrate that the mammalian HEK293 cell system is suitable for mechanistic and comparative functional studies on UCPs and provides a non-confounding mitochondrial, cellular and genetic background.
机译:对解偶联蛋白(UCPs)的机理研究不仅对于确定其细胞功能非常重要,而且对于确定操纵线粒体能量转导的潜在药物靶标也至关重要。迄今为止,不同线粒体,细胞和遗传背景阻碍了天然环境中解偶联蛋白的功能和比较研究。人工系统,例如异位表达酵母的UCP或带有重组UCP的脂质体,被用来解决关键的机械问题,但这些系统也与天然线粒体的结果不一致。我们在这里介绍一种新型的哺乳动物细胞培养系统(人类胚胎肾293-HEK293)来研究UCP1的功能。衍生出稳定转染的HEK293细胞系,其中含有与组织线粒体相当的小鼠UCP1浓度。在此基于细胞的测试系统中,UCP1显示出天然的功能行为,因为它可以被脂肪酸(棕榈酸)激活,并被嘌呤核苷酸二磷酸鸟苷(GDP)抑制。在HEK293中,UCP1同型二聚体的催化中心活性与支持UCP1的棕色脂肪组织中的活性相当。重要的是,在比酵母线粒体更高的蛋白质水平下,HEK293细胞线粒体中的UCP1是完全可抑制的,并且不会促进基础质子传导,因此强调了出于治疗目的需要UCP1激活。这些发现和对UCP1特性的分析表明,哺乳动物HEK293细胞系统适用于UCP的机理和比较功能研究,并提供了无混淆的线粒体,细胞和遗传背景。

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