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硫胺素可改善糖尿病大鼠心脏线粒体中丙酮酸脱氢酶(PDH)的抑制作用:研究高糖环境下心肌成纤维细胞中 PDH 活性和 PDH E1α磷酸化之间的差异。

Thiamine ameliorates diabetes-induced inhibition of pyruvate dehydrogenase (PDH) in rat heart mitochondria: investigating the discrepancy between PDH activity and PDH E1alpha phosphorylation in cardiac fibroblasts exposed to high glucose.

机构信息

Laboratory of Pharmacotherapy, Osaka University of Pharmaceutical Sciences, Takatsuki, Japan.

出版信息

J Pharmacol Sci. 2010;113(4):343-52. doi: 10.1254/jphs.09359fp. Epub 2010 Jul 13.

DOI:10.1254/jphs.09359fp
PMID:20644337
Abstract

The activity of pyruvate dehydrogenase (PDH) is reduced in diabetic patients. Phosphorylation of the PDH E1alpha subunit by PDH kinase contributes to the suppression of PDH activity. PDH requires thiamine as a coenzyme. We investigated the exact mechanism of diabetes-induced PDH inhibition, and the effect of thiamine in both in vivo and in vitro experiments. Treatment of rats with thiamine significantly, although partially, recovered streptozotocin (STZ)-induced reductions in mitochondrial PDH activity. Nevertheless, we found that PDH E1alpha phosphorylation in the thiamine-treated STZ group was perfectly diminished to the same level as that in the control group. STZ treatment significantly caused enhancements of the expression of O-glycosylated protein in the rat hearts, which was decreased by thiamine repletion. Next, the rat cardiac fibroblasts (RCFs) were cultured in the presence of high glucose levels. Thiamine dramatically recovered high glucose-induced PDH inhibition. High glucose loads did not alter the phosphorylated PDH E1alpha. PDH inhibition in RCFs was not accompanied by an increase in the PDH E1alpha phosphorylation. The O-glycosylated protein was markedly increased in RCFs exposed to high glucose, which was inhibited by thiamine. These results suggest that thiamine ameliorates diabetes-induced PDH inhibition by suppressing the increased expression of the O-glycosylated protein. The O-glycosylation of PDH E1alpha may be involved in the regulation of the PDH activity.

摘要

丙酮酸脱氢酶(PDH)的活性在糖尿病患者中降低。PDH 激酶对 PDH E1α亚基的磷酸化有助于抑制 PDH 活性。PDH 需要硫胺素作为辅酶。我们研究了糖尿病诱导的 PDH 抑制的确切机制,以及硫胺素在体内和体外实验中的作用。用硫胺素治疗大鼠可显著(尽管部分)恢复链脲佐菌素(STZ)诱导的线粒体 PDH 活性降低。然而,我们发现,硫胺素处理的 STZ 组中 PDH E1α的磷酸化被完全降低到与对照组相同的水平。STZ 处理显著导致大鼠心脏中 O-糖基化蛋白的表达增强,而硫胺素补充可使其减少。接下来,将大鼠心肌成纤维细胞(RCFs)在高葡萄糖水平下培养。硫胺素可显著恢复高葡萄糖诱导的 PDH 抑制。高葡萄糖负荷不会改变磷酸化的 PDH E1α。RCFs 中的 PDH 抑制不伴有 PDH E1α磷酸化增加。高葡萄糖处理的 RCFs 中 O-糖基化蛋白明显增加,而硫胺素可抑制其增加。这些结果表明,硫胺素通过抑制 O-糖基化蛋白的增加表达来改善糖尿病诱导的 PDH 抑制。PDH E1α的 O-糖基化可能参与 PDH 活性的调节。

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