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Mnb/Dyrk1A磷酸化调节发动蛋白1与含SH3结构域蛋白的相互作用。

Mnb/Dyrk1A phosphorylation regulates the interaction of dynamin 1 with SH3 domain-containing proteins.

作者信息

Huang Yu, Chen-Hwang Mo-Chou, Dolios Georgia, Murakami Noriko, Padovan Júlio C, Wang Rong, Hwang Yu-Wen

机构信息

Molecular Biology Department, New York State Institute for Basic Research in Developmental Disabilities, Staten Island, New York 10314, USA.

出版信息

Biochemistry. 2004 Aug 10;43(31):10173-85. doi: 10.1021/bi036060+.

Abstract

Mnb/Dyrk1A is a proline-directed serine/threonine kinase implicated in Down's syndrome. Mnb/Dyrk1A was shown to phosphorylate dynamin 1 and alter its interactions with several SH3 domain-containing endocytic accessory proteins. To determine the mechanism of regulation, we mapped the Mnb/Dyrk1A phosphorylation sites in dynamin 1. Using a combination of deletion mutants and synthetic peptides, three potential Mnb/Dyrk1A phosphorylation sites (S778, S795, and S857) were first identified. Phosphorylation at S795 and S857 was confirmed in full-length dynamin 1, and S857 was subsequently determined to be the major Mnb/Dyrk1A phosphorylation site in vitro. Phosphorylation at S857 was demonstrated to be the basis for altering the binding of dynamin 1 to amphiphysin 1 and Grb 2 by site-directed mutants mimicking phosphorylation. Furthermore, S857 of dynamin 1 is phosphorylated by the endogenous kinase in brain extracts and in PC12 cells. In PC12 cells, the state of S857 phosphorylation is dependent on membrane potentials. These results suggest that S857 phosphorylation is a physiological event, which regulates the binding of dynamin 1 to SH3 domain-containing proteins. Since S857 is unique to dynamin 1xa isoforms, Mnb/Dyrk1A regulation of dynamin 1 is expected to be specific to these spliced variants.

摘要

Mnb/Dyrk1A是一种与唐氏综合征有关的脯氨酸定向丝氨酸/苏氨酸激酶。研究表明,Mnb/Dyrk1A可使发动蛋白1磷酸化,并改变其与几种含SH3结构域的内吞辅助蛋白的相互作用。为了确定调节机制,我们绘制了发动蛋白1中Mnb/Dyrk1A的磷酸化位点。通过缺失突变体和合成肽的组合,首先鉴定出三个潜在的Mnb/Dyrk1A磷酸化位点(S778、S795和S857)。在全长发动蛋白1中证实了S795和S857的磷酸化,随后确定S857是体外主要的Mnb/Dyrk1A磷酸化位点。通过模拟磷酸化的定点突变体证明,S857的磷酸化是改变发动蛋白1与发动蛋白1和Grb 2结合的基础。此外,发动蛋白1的S857在脑提取物和PC12细胞中被内源性激酶磷酸化。在PC12细胞中,S857的磷酸化状态取决于膜电位。这些结果表明,S857磷酸化是一种生理事件,它调节发动蛋白1与含SH3结构域蛋白的结合。由于S857是发动蛋白1xa亚型所特有的,预计Mnb/Dyrk1A对发动蛋白1的调节对这些剪接变体具有特异性。

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