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首页> 外文期刊>Human Molecular Genetics >Phosphorylation of hnRNP K by cyclin-dependent kinase 2 controls cytosolic accumulation of TDP-43
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Phosphorylation of hnRNP K by cyclin-dependent kinase 2 controls cytosolic accumulation of TDP-43

机译:细胞周期蛋白依赖性激酶2对hnRNP K的磷酸化作用控制TDP-43的胞质积累

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Cytosolic accumulation of TAR DNA binding protein 43 (TDP-43) is a major neuropathological feature of amyotrophic lateral sclerosis (ALS) and frontotemporal lobar degeneration (FTLD). However, the mechanisms involved in TDP-43 accumulation remain largely unknown. Previously, we reported that inhibitors of cyclin-dependent kinases (CDKs) prevented cytosolic stress granule accumulation of TDP-43, correlating with depletion of heterogeneous ribonucleoprotein (hnRNP) K from stress granules. In the present study, we further investigated the relationship between TDP-43 and hnRNP K and their control by CDKs. Inhibition of CDK2 abrogated the accumulation of TDP-43 into stress granules. Phosphorylated CDK2 co-localized with accumulated TDP-43 and phosphorylated hnRNP K in stress granules. Inhibition of CDK2 phosphorylation blocked phosphorylation of hnRNP K, preventing its incorporation into stress granules. Due to interaction between hnRNP K with TDP-43, the loss of hnRNP K from stress granules prevented accumulation of TDP-43. Mutation of Ser216 and Ser284 phosphorylation sites on hnRNP K inhibited hnRNP K-and TDP-43-positive stress granule formation in transfected cells. The interaction between hnRNP K and TDP-43 was further confirmed by the loss of TDP-43 accumulation following siRNA-mediated inhibition of hnRNP K expression. A substantial decrease of CDK2 and hnRNP K expression in spinal cord motor neurons in ALS patients demonstrates a potential key role for these proteins in ALS and TDP-43 accumulation, indicating that further investigation of the association between hnRNP K and TDP-43 is warranted. Understanding how kinase activity modulates TDP-43 accumulation may provide new pharmacological targets for disease intervention.
机译:TAR DNA结合蛋白43(TDP-43)的胞质蓄积是肌萎缩性侧索硬化(ALS)和额颞叶变性(FTLD)的主要神经病理学特征。但是,参与TDP-43积累的机制仍然未知。以前,我们报道了细胞周期蛋白依赖性激酶(CDKs)抑制剂阻止了TDP-43胞质应激颗粒的积累,这与应激颗粒中异质核糖核蛋白(hnRNP)K的消耗有关。在本研究中,我们进一步研究了TDP-43和hnRNP K及其与CDKs控制之间的关系。抑制CDK2消除了TDP-43积累成应激颗粒。磷酸化的CDK2与累积的TDP-43和磷酸化的hnRNP K在应激颗粒中共定位。抑制CDK2磷酸化可阻止hnRNP K磷酸化,从而防止其掺入应激颗粒中。由于hnRNP K与TDP-43之间的相互作用,应力颗粒中hnRNP K的丢失阻止了TDP-43的积累。 hnRNP K上Ser216和Ser284磷酸化位点的突变抑制了转染细胞中hnRNP K和TDP-43阳性应激颗粒的形成。 siRNA介导的hnRNP K表达抑制后,TDP-43积累的丧失进一步证实了hnRNP K与TDP-43之间的相互作用。 ALS患者脊髓运动神经元中CDK2和hnRNP K表达的显着降低表明这些蛋白在ALS和TDP-43积累中可能发挥关键作用,这表明有必要进一步研究hnRNP K和TDP-43之间的关联。了解激酶活性如何调节TDP-43积累可能为疾病干预提供新的药理学目标。

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