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首页> 外文期刊>Molecular cell >Increased steady-state in levels of CUGBP1 in myotonic dystrophy 1 are due to PKC-mediated hyperphosphorylation
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Increased steady-state in levels of CUGBP1 in myotonic dystrophy 1 are due to PKC-mediated hyperphosphorylation

机译:强直性肌营养不良症1中CUGBP1水平增加的稳态归因于PKC介导的磷酸化过高

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摘要

The genetic basis of myotonic dystrophy type 1 (DM1) is a CTG expansion in the 3'untranslated region (UTR) of DMPK. The pathogenic mechanism involves an RNA gain of function in which the repeat-containing transcripts accumulate in nuclei and alter the functions of RNA-binding proteins such as CUG-binding protein 1 (CUGBP1). CUGBPI levels are increased in DM1 myoblasts, heart, and skeletal muscle tissues and in some DM1 mouse models. However, the molecular mechanisms for increased CUGBP1 in DM1 are unclear. Here, we demonstrate that expression of DMPK-CUG-repeat RNA results in hyperphosphorylation and stabilization of CUGBP1. CUGBP1 is hyperphosphorylated in DM1 tissues, cells, and a DM1 mouse model. Activation of PKC is required for CUGBP1 hyperphosphorylation in DM1 cells, and PKC alpha and Oil directly phosphorylate CUGBP1 in vitro. These results indicate that inappropriate activation of the PKC pathway contributes to the pathogenic effects of a noncoding RNA.
机译:1型强直性营养不良的遗传基础是DMPK的3'非翻译区(UTR)中的CTG扩展。致病机制涉及RNA功能获得,其中包含重复序列的转录物积聚在细胞核中,并改变RNA结合蛋白(例如CUG结合蛋白1(CUGBP1))的功能。在DM1成肌细胞,心脏和骨骼肌组织以及某些DM1小鼠模型中,CUGBPI水平升高。但是,尚不清楚DM1中增加CUGBP1的分子机制。在这里,我们证明DMPK CUG重复RNA的表达导致CUGBP1的过度磷酸化和稳定。 CUGBP1在DM1组织,细胞和DM1小鼠模型中被过度磷酸化。 PKC的激活是DM1细胞中CUGBP1过度磷酸化所必需的,并且PKCα和Oil在体外直接磷酸化CUGBP1。这些结果表明,PKC途径的不适当激活有助于非编码RNA的致病作用。

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