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Effect of β-alanine treatment on mitochondrial taurine level and 5-taurinomethyluridine content

机译:β-丙氨酸处理对线粒体牛磺酸水平和5-牛磺酸甲基尿苷含量的影响

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BackgroundThe β-amino acid, taurine, is a nutritional requirement in some species. In these species, the depletion of intracellular stores of taurine leads to the development of severe organ dysfunction. The basis underlying these defects is poorly understood, although there is some suggestion that oxidative stress may contribute to the abnormalities. Recent studies indicate that taurine is required for normal mitochondrial protein synthesis and normal electron transport chain activity; it is known that defects in these events can lead to severe mitochondrial oxidative stress. The present study examines the effect of taurine deficiency on the first step of mitochondrial protein synthesis regulation by taurine, namely, the formation of taurinomethyluridine containing tRNA.MethodsIsolated rat cardiomyocytes were rendered taurine deficient by incubation with medium containing the taurine transport inhibitor, β-alanine. The time course of cellular and mitochondrial taurine depletion was measured. The primer extension method was employed to evaluate the effect of β-alanine treatment on taurinomethyluridine content of tRNA~(Leu). The protein levels of ND6 were also determined by Western blot analysis.Resultsβ-alanine caused a time-dependent decrease in cellular taurine content, which were reduced in half after 48 hrs of incubation. The amount of taurine in the mitochondria was considerably less than that in the cytosol and was unaffected by β-alanine treatment. Approximately 70% of the tRNA~(Leu) in the untreated cell lacked taurinomethyluridine and these levels were unchanged following β-alanine treatment. Protein content of ND6, however, was significantly reduced after 48 hours incubation with β-alanine.ConclusionsThe taurine levels of the cytosol and the mitochondria are not directly coupled. The β-alanine-mediated reduction in taurine levels is too small to affect taurinomethyluridine levels. Nonetheless, it interferes with mitochondrial protein synthesis, as exemplified by a decrease in ND6 protein content. Thus, β-alanine does not cause alterations in mitochondrial protein synthesis through the lowering of taurine levels.
机译:背景β-氨基酸牛磺酸是某些物种的营养需求。在这些物种中,牛磺酸细胞内储存的耗竭导致严重的器官功能障碍的发展。尽管存在一些暗示氧化应激可能导致异常的暗示,但对这些缺陷的基础却知之甚少。最近的研究表明,牛磺酸是正常线粒体蛋白质合成和正常电子传输链活性所必需的;众所周知,这些事件中的缺陷会导致严重的线粒体氧化应激。本研究探讨了牛磺酸缺乏对牛磺酸调节线粒体蛋白质合成第一步的影响,即形成含有牛磺酸牛尿苷甲基尿苷的方法。 。测量了细胞和线粒体牛磺酸消耗的时间过程。采用引物延伸法评价β-丙氨酸处理对tRNA〜(Leu)牛磺酸甲基尿苷含量的影响。还通过蛋白质印迹分析确定了ND6的蛋白质水平。结果β-丙氨酸会导致时间依赖性的牛磺酸含量降低,在孵育48小时后降低一半。线粒体中牛磺酸的量明显少于细胞质中的牛磺酸,并且不受β-丙氨酸处理的影响。未经处理的细胞中约有70%的tRNA〜(Leu)缺乏牛磺酸甲基尿苷,并且在β-丙氨酸处理后这些水平未发生变化。然而,与β-丙氨酸一起孵育48小时后,ND6的蛋白质含量显着降低。结论牛磺酸的胞质溶胶和线粒体水平并不直接相关。 β-丙氨酸介导的牛磺酸水平降低幅度太小,无法影响牛磺酸甲基尿苷水平。但是,它会干扰线粒体蛋白质的合成,例如ND6蛋白质含量的降低。因此,β-丙氨酸不会通过降低牛磺酸水平而引起线粒体蛋白质合成的改变。

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