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细胞质动力蛋白中间链磷酸化调节与动力蛋白激活蛋白的结合。

Cytoplasmic dynein intermediate chain phosphorylation regulates binding to dynactin.

作者信息

Vaughan P S, Leszyk J D, Vaughan K T

机构信息

Department of Biological Sciences, University of Notre Dame, Notre Dame, Indiana 46556-0369, USA.

出版信息

J Biol Chem. 2001 Jul 13;276(28):26171-9. doi: 10.1074/jbc.M102649200. Epub 2001 May 4.

Abstract

Previously, we identified dynactin as a cargo receptor or adaptor for cytoplasmic dynein, mediated by an interaction between the dynein intermediate chain and p150(Glued). To test phosphorylation as a potential regulatory mechanism for this interaction, we analyzed cytoplasmic dynein by two-dimensional gel analysis and detected two intermediate chain variants, one of which was eliminated by phosphatase treatment. Overlay assays demonstrated that p150(Glued) bound dephosphorylated but not phosphorylated intermediate chains. We then subjected the purified cytoplasmic dynein intermediate chain to mass spectrometry and identified a single phosphorylated tryptic fragment corresponding to the p150(Glued)-binding domain. Fragmentation and retention time analysis mapped the phosphorylation site to serine 84. Site-directed mutants designed to mimic the dephosphorylated or phosphorylated intermediate chain disrupted both in vitro phosphorylation and in vivo phosphorylation of transfected proteins. Mutants mimicking the dephosphorylated form bound p150(Glued) in vitro and overexpression perturbed transport of dynein-dependent membranes. Mutants mimicking the phosphorylated form displayed diminished p150(Glued) binding in vitro and did not disrupt dynein-mediated transport when expressed in vivo. These findings represent the first mapping of an intermediate chain phosphorylation site and suggest that this phosphorylation plays an important role in regulating the binding of cytoplasmic dynein to dynactin.

摘要

此前,我们确定动力蛋白激活蛋白是胞质动力蛋白的货物受体或衔接蛋白,由动力蛋白中间链与p150(Glued)之间的相互作用介导。为了测试磷酸化作为这种相互作用的潜在调节机制,我们通过二维凝胶分析对胞质动力蛋白进行了分析,并检测到两种中间链变体,其中一种经磷酸酶处理后消失。覆盖分析表明,p150(Glued)结合去磷酸化而非磷酸化的中间链。然后,我们对纯化的胞质动力蛋白中间链进行质谱分析,鉴定出一个与p150(Glued)结合结构域相对应的单一磷酸化胰蛋白酶片段。片段化和保留时间分析将磷酸化位点定位到丝氨酸84。旨在模拟去磷酸化或磷酸化中间链的定点突变体破坏了转染蛋白的体外磷酸化和体内磷酸化。模拟去磷酸化形式的突变体在体外结合p150(Glued),过表达扰乱了依赖动力蛋白的膜的运输。模拟磷酸化形式的突变体在体外显示出与p150(Glued)的结合减少,并且在体内表达时不会破坏动力蛋白介导的运输。这些发现首次绘制了中间链磷酸化位点,并表明这种磷酸化在调节胞质动力蛋白与动力蛋白激活蛋白的结合中起重要作用。

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