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网格蛋白包被组装多肽复合物。自身磷酸化及组装活性。

The clathrin coat assembly polypeptide complex. Autophosphorylation and assembly activities.

作者信息

Keen J H, Chestnut M H, Beck K A

出版信息

J Biol Chem. 1987 Mar 15;262(8):3864-71.

PMID:2880851
Abstract

A 50-kDa polypeptide that is rapidly phosphorylated on addition of [gamma-32P]ATP to isolated clathrin-coated vesicles is shown here to be identical to the 50-kDa component (AP50) of the clathrin assembly protein (AP), a complex that promotes the assembly of clathrin coat structures under physiological conditions of pH and ionic strength. Phosphorylation of the AP50 occurred readily at 0 degrees C, almost exclusively on a threonyl residue(s). This reaction is attributable to autophosphorylation, since the AP50 was able to covalently incorporate 32P from [gamma-32P]ATP after separation by either one- or two-dimensional sodium dodecyl sulfate gel electrophoresis. Kinetic studies in solution were consistent with an intramolecular phosphorylation event; in addition, a concentration-dependent increase in AP50 phosphorylation was observed that may reflect intermolecular AP-AP activation of autophosphorylation. The phosphorylated AP50 was resistant to several inorganic phosphatases tested but was a substrate for protein phosphatases 1 and 2A, suggesting that a physiological phosphorylation-dephosphorylation cycle may exist. The phosphorylation state of the AP50 did not affect the ability of the AP to promote in vitro clathrin coat assembly. These and other data suggest that unique structural domains of the assembly protein are responsible for assembly (the 100-kDa components) and autophosphorylation (the AP50) and that the latter may be active as a protein kinase in the intact cell.

摘要

在向分离出的网格蛋白包被小泡中添加[γ-32P]ATP后迅速被磷酸化的一种50-kDa多肽,在此被证明与网格蛋白组装蛋白(AP)的50-kDa组分(AP50)相同,AP是一种在生理pH和离子强度条件下促进网格蛋白包被结构组装的复合物。AP50的磷酸化在0℃时很容易发生,几乎完全发生在一个苏氨酰残基上。该反应归因于自身磷酸化,因为在通过一维或二维十二烷基硫酸钠凝胶电泳分离后,AP50能够共价结合来自[γ-32P]ATP的32P。溶液中的动力学研究与分子内磷酸化事件一致;此外,观察到AP50磷酸化呈浓度依赖性增加,这可能反映了分子间AP-AP对自身磷酸化的激活。磷酸化的AP50对所测试的几种无机磷酸酶具有抗性,但却是蛋白磷酸酶1和2A的底物,这表明可能存在生理上的磷酸化-去磷酸化循环。AP50的磷酸化状态并不影响AP促进体外网格蛋白包被组装的能力。这些以及其他数据表明,组装蛋白的独特结构域负责组装(100-kDa组分)和自身磷酸化(AP50),并且后者在完整细胞中可能作为蛋白激酶发挥作用。

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