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首页> 外文期刊>The Biochemical Journal >Differential regulation of glutamate-cysteine ligase subunit expression and increased holoenzyme formation in response to cysteine deprivation
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Differential regulation of glutamate-cysteine ligase subunit expression and increased holoenzyme formation in response to cysteine deprivation

机译:谷氨酸-半胱氨酸连接酶亚基表达的差异调节和响应半胱氨酸剥夺增加的全酶形成

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摘要

GCL (glutamate-cysteine ligase) is a heterodimer of a GCLC (GCL catalytic subunit) that possesses all of the enzymatic activity and a GCLM (GCL modifier subunit) that alters the K-i of GCLC for GSH. We hypothesized that the expression of GCLM and the association of GCLM with GCLC were responsible for the apparent increase in GCL activity state observed in the liver of rats fed low-protein diets or in hepatocytes cultured in low-sulphur amino acid-containing medium. Therefore we conducted a series of studies using rats and a human hepatoma (HepG2/C3A) cell line to assess the role of GCLM and holoenzyme formation in the regulation of GCL activity in response to sulphur amino acid intake or availability. Increases in GCL activity in rat liver, as well as in HepG2 cells, were due to the additive effects of changes in the amount of GCLC and the k(cat) for GCLC. The increase in the k(cat) for GCLC was associated with increased holoenzyme formation, which was associated with an increase in the molar ratio of GCLM to GCLC. Furthermore, our results indicate that the GCLM level in rat liver is always limiting and that up-regulation of the GCLM level results in increased holoenzyme formation and an increase in the k(cat). This is the first report demonstrating that the catalytic efficiency of rat GCL is increased by holoenzyme formation and the first demonstration of differential up-regulation of the GCL subunits in response to cysteine deprivation.
机译:GCL(谷氨酸-半胱氨酸连接酶)是GCLC(GCL催化亚基)的异二聚体,具有所有的酶促活性,而GCLM(GCL修饰子亚基)则改变了GCLC对GSH的K-i。我们假设GCLM的表达以及GCLM与GCLC的关联是导致在喂食低蛋白饮食的大鼠肝脏或在含低硫氨基酸的培养基中培养的肝细胞中观察到的GCL活性状态明显增加的原因。因此,我们使用大鼠和人肝癌(HepG2 / C3A)细胞系进行了一系列研究,以评估GCLM和全酶形成在响应硫氨基酸摄入或可获得性而调节GCL活性中的作用。大鼠肝脏以及HepG2细胞中GCL活性的增加归因于GCLC量的变化和GCLC的k(cat)变化的累加效应。 GCLC的k(cat)的增加与全酶形成的增加有关,这与GCLM与GCLC的摩尔比的增加有关。此外,我们的结果表明,大鼠肝脏中GCLM的水平始终是限制性的,GCLM的水平上调会导致全酶形成的增加和k(cat)的增加。这是第一个证明全酶形成可提高大鼠GCL催化效率的报道,也是第一个证明半胱氨酸剥夺后GCL亚基差异上调的研究。

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