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Dyrk1和半胱天冬酶-3对海马神经祖细胞中亨廷顿相互作用蛋白1促凋亡活性的调控

Regulation of the proapoptotic activity of huntingtin interacting protein 1 by Dyrk1 and caspase-3 in hippocampal neuroprogenitor cells.

作者信息

Kang Jae Eun, Choi Shin Ae, Park Jung Bum, Chung Kwang Chul

机构信息

Department of Biochemistry and Molecular Biology, Yonsei University College of Medicine, Seoul, Korea.

出版信息

J Neurosci Res. 2005 Jul 1;81(1):62-72. doi: 10.1002/jnr.20534.

DOI:10.1002/jnr.20534
PMID:15906374
Abstract

Dual specific protein kinase Dyrks are thought to play a key role in the regulation of cell growth in a variety of cellular systems. Interestingly, human Dyrk1 is mapped to the Down's syndrome (DS) critical region on chromosome 21, and thought to be a candidate gene responsible for the mental retardation of DS patients. Huntingtin-interacting protein 1 (Hip-1), a proapoptotic mediator, is implicated as a molecular accomplice in the pathogenesis of Huntington's disease. In the present study we found that Dyrk1 selectively binds to and phosphorylates Hip-1 during the neuronal differentiation of embryonic hippocampal neuroprogenitor (H19-7) cells. The Dyrk1-mediated phosphorylation of Hip-1, in response to bFGF, resulted in the blockade of Hip-1-mediated neuronal cell death as well as the enhancement of neurite outgrowth. Furthermore, the addition of etoposide to proliferating H19-7 cells caused the diminished binding of Hip-1 to Dyrk1 and the levels of phosphorylated Hip-1 remarkably decreased. Simultaneously, the dissociated Hip-1 from Dyrk1 bound to caspase-3 in response to etoposide, which led to its activation and consequently cell death in H19-7 cells. These data suggest that the phosphorylation of Hip-1 by Dyrk1 has a dual role in regulating neuronal differentiation and cell death. The interaction between Dyrk1 and Hip-1 appeared to be differentially modulated by different kinds of stimuli, such as bFGF and etoposide in H19-7 cells.

摘要

双特异性蛋白激酶Dyrks被认为在多种细胞系统的细胞生长调节中起关键作用。有趣的是,人类Dyrk1基因定位于21号染色体上的唐氏综合征(DS)关键区域,被认为是导致DS患者智力发育迟缓的候选基因。亨廷顿相互作用蛋白1(Hip-1)是一种促凋亡介质,被认为是亨廷顿病发病机制中的分子共犯。在本研究中,我们发现Dyrk1在胚胎海马神经祖细胞(H19-7)的神经元分化过程中选择性地与Hip-1结合并使其磷酸化。Dyrk1介导的Hip-1磷酸化,响应碱性成纤维细胞生长因子(bFGF),导致Hip-1介导的神经元细胞死亡被阻断,同时神经突生长增强。此外,向增殖的H19-7细胞中加入依托泊苷导致Hip-1与Dyrk1的结合减少,磷酸化Hip-1的水平显著降低。同时,响应依托泊苷,从Dyrk1解离的Hip-1与caspase-3结合,导致其激活,从而导致H19-7细胞死亡。这些数据表明,Dyrk1对Hip-1的磷酸化在调节神经元分化和细胞死亡中具有双重作用。Dyrk1与Hip-1之间的相互作用似乎受到不同类型刺激的差异调节,例如H19-7细胞中的bFGF和依托泊苷。

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