首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Mammalian liver cytochrome c is tyrosine-48 phosphorylated in vivo, inhibiting mitochondrial respiration.
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Mammalian liver cytochrome c is tyrosine-48 phosphorylated in vivo, inhibiting mitochondrial respiration.

机译:哺乳动物肝脏细胞色素c在体内被酪氨酸48磷酸化,抑制线粒体呼吸。

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Cytochrome c (Cyt c) is part of the mitochondrial electron transport chain (ETC), accepting electrons from bc(1) complex and transferring them to cytochrome c oxidase (CcO). The ETC generates the mitochondrial membrane potential, which is used by ATP synthase to produce ATP. In addition, the release of Cyt c from the mitochondria often commits a cell to undergo apoptosis. Considering its central role in life (respiration) and death (apoptosis) decisions one would expect tight regulation of Cyt c function. Reversible phosphorylation is a main cellular regulatory mechanism, but the effect of cell signaling targeting the mitochondrial oxidative phosphorylation system is not well understood, and only a small number of proteins that can be phosphorylated have been identified to date. We have recently shown that Cyt c isolated from cow heart tissue is phosphorylated on tyrosine 97 in vivo, which leads to inhibition of respiration in the reaction with CcO. In this study we isolated Cyt c from a different organ, cow liver, under conditions preserving the physiological phosphorylation state. Western analysis with a phosphotyrosine specific antibody suggested that liver Cyt c is phosphorylated. Surprisingly, the phosphorylation site was unambiguously assigned to Tyr-48 by immobilized metal affinity chromatographyano-liquid chromatography/electrospray ionization mass spectrometry (IMACano-LC/ESI-MS), and not to the previously identified phospho-Tyr-97 in cow heart. As is true of Tyr-97, Tyr-48 is conserved in eukaryotes. As one possible consequence of Tyr-48 phosphorylation we analyzed the in vitro reaction kinetics with isolated cow liver CcO revealing striking differences. Maximal turnover of Tyr-48 phosphorylated Cyt c was 3.7 s(-1) whereas dephosphorylation resulted in a 2.2 fold increase in activity to 8.2 s(-1). Effects of Tyr-48 phosphorylation based on the Cyt c crystal structure are discussed.
机译:细胞色素c(Cyt c)是线粒体电子传输链(ETC)的一部分,接受bc(1)复合物中的电子并将其转移至细胞色素c氧化酶(CcO)。 ETC产生线粒体膜电位,ATP合酶可利用该电位产生ATP。另外,从线粒体释放Cyt c常常使细胞发生凋亡。考虑到它在生命(呼吸)和死亡(细胞凋亡)决策中的核心作用,人们期望Cyt c功能的严格调节。可逆磷酸化是主要的细胞调节机制,但是针对线粒体氧化磷酸化系统的细胞信号传导作用尚不十分清楚,迄今为止,仅鉴定出少量可被磷酸化的蛋白质。我们最近显示,从牛心脏组织中分离的Cyt c在体内在酪氨酸97上被磷酸化,这导致与CcO反应的呼吸抑制。在这项研究中,我们在保持生理磷酸化状态的条件下,从不同的器官(牛肝)中分离了Cyt c。用磷酸酪氨酸特异性抗体进行Western分析表明,肝脏Cyt c被磷酸化了。出乎意料的是,通过固定化金属亲和色谱法/纳米液相色谱法/电喷雾电离质谱法(IMAC / nano-LC / ESI-MS)将磷酸化位点明确分配给Tyr-48,而不是先前鉴定的磷酸化Tyr-97在牛心里。与Tyr-97一样,Tyr-48在真核生物中是保守的。作为Tyr-48磷酸化的可能结果之一,我们分析了离体牛肝CcO的体外反应动力学,显示出显着差异。 Tyr-48磷酸化Cyt c的最大周转时间为3.7 s(-1),而去磷酸化导致活性增加2.2倍,达到8.2 s(-1)。讨论了基于Cyt c晶体结构的Tyr-48磷酸化的影响。

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