首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Interleukin 1β Regulation of the System xc− Substrate-specific Subunit xCT in Primary Mouse Astrocytes Involves the RNA-binding Protein HuR
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Interleukin 1β Regulation of the System xc− Substrate-specific Subunit xCT in Primary Mouse Astrocytes Involves the RNA-binding Protein HuR

机译:在原代小鼠星形胶质细胞中系统xc-底物特异性亚基xCT的白介素1β调控涉及RNA结合蛋白HuR。

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摘要

System xc is a heteromeric amino acid cystine/glutamate antiporter that is constitutively expressed by cells of the CNS, where it functions in the maintenance of intracellular glutathione and extracellular glutamate levels. We recently determined that the cytokine, IL-1β, increases the activity of system xc in CNS astrocytes secondary to an up-regulation of its substrate-specific light chain, xCT, and that this occurs, in part, at the level of transcription. However, an in silico analysis of the murine xCT 3′-UTR identified numerous copies of adenine- and uridine-rich elements, raising the possibility that undefined trans-acting factors governing mRNA stability and translation may also contribute to xCT expression. Here we show that IL-1β increases the level of mRNA encoding xCT in primary cultures of astrocytes isolated from mouse cortex in association with an increase in xCT mRNA half-life. Additionally, IL-1β induces HuR translocation from the nucleus to the cytoplasm. RNA immunoprecipitation analysis reveals that HuR binds directly to the 3′-UTR of xCT in an IL-1β-dependent manner. Knockdown of endogenous HuR protein abrogates the IL-1β-mediated increase in xCT mRNA half-life, whereas overexpression of HuR in unstimulated primary mouse astrocytes doubles the half-life of constitutive xCT mRNA. This latter effect is accompanied by an increase in xCT protein levels, as well as a functional increase in system xc activity. Altogether, these data support a critical role for HuR in mediating the IL-1β-induced stabilization of astrocyte xCT mRNA.
机译:系统xc -是一种异源氨基酸胱氨酸/谷氨酸反转运蛋白,由CNS细胞组成性表达,在其中维持细胞内谷胱甘肽和细胞外谷氨酸水平。我们最近确定,细胞因子IL-1β会增加底物特异性轻链xCT的上调继发的中枢神经系统星形胶质细胞系统xc -的活性,并且这种情况发生在部分,在转录水平上。但是,对鼠类xCT 3'-UTR进行的计算机分析表明,大量拷贝的富含腺嘌呤和尿苷的元素,从而增加了控制mRNA稳定性和翻译的不确定反式作用因子也可能有助于xCT表达的可能性。在这里,我们显示IL-1β会增加从小鼠皮质分离出的星形胶质细胞原代培养物中xCT的mRNA编码水平,并会增加xCT mRNA的半衰期。另外,IL-1β诱导HuR从细胞核转移到细胞质。 RNA免疫沉淀分析显示,HuR以IL-1β依赖性方式直接结合xCT的3'-UTR。内源性HuR蛋白的敲除消除了IL-1β介导的xCT mRNA半衰期增加,而在未刺激的原代小鼠星形胶质细胞中HuR的过表达使组成性xCT mRNA的半衰期加倍。后一种作用伴随着xCT蛋白水平的增加,以及系统xc -活性的功能性增加。总之,这些数据支持HuR在介导IL-1β诱导的星形胶质细胞xCT mRNA稳定中的关键作用。

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