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神经元磷蛋白突触素I对肌动蛋白聚合的影响。II. 动力学曲线的分析解读

Effects of the neuronal phosphoprotein synapsin I on actin polymerization. II. Analytical interpretation of kinetic curves.

作者信息

Fesce R, Benfenati F, Greengard P, Valtorta F

机构信息

Department of Medical Pharmacology, San Raffaele Scientific Institute, University of Milano, Italy.

出版信息

J Biol Chem. 1992 Jun 5;267(16):11289-99.

PMID:1597463
Abstract

The general features of the kinetics of actin polymerization are investigated by mathematical models, with the aim of identifying the kinetically relevant parameters in the process and detecting and interpreting the alterations occurring in actin polymerization under various experimental conditions. Polymerization curves, obtained by following the increase in fluorescence of actin derivatized with N-(1-pyrenyl) iodoacetamide, are fitted using analytical equations derived from biochemical models of the actin polymerization process. Particular attention is given to the evaluation of the effects of the neuronal phosphoprotein synapsin I. The models obtained under various ionic conditions reveal that synapsin I interacts with actin in a very complex fashion, sharing some of the properties of classical nucleating proteins but displaying also actions not described previously for other actin-binding proteins. Synapsin I appears to bind G-actin with a very high stoichiometry (1:2-4), and the complex behaves as an F-actin nucleus, producing actin filaments under conditions where spontaneous polymerization is negligible. These actions of synapsin I are markedly affected by site-specific phosphorylation of the protein. An original transformation of the fluorescence data, which estimates the disappearance rate of actin monomer toward the critical concentration, is presented and shown to be of general usefulness for the study of actin-binding proteins.

摘要

通过数学模型研究肌动蛋白聚合动力学的一般特征,目的是确定该过程中与动力学相关的参数,并检测和解释在各种实验条件下肌动蛋白聚合过程中发生的变化。通过跟踪用N-(1-芘基)碘乙酰胺衍生化的肌动蛋白荧光增加获得的聚合曲线,使用从肌动蛋白聚合过程的生化模型推导的解析方程进行拟合。特别关注神经元磷蛋白突触素I的作用评估。在各种离子条件下获得的模型表明,突触素I以非常复杂的方式与肌动蛋白相互作用,具有一些经典成核蛋白的特性,但也表现出以前其他肌动蛋白结合蛋白未描述的作用。突触素I似乎以非常高的化学计量比(1:2 - 4)结合G-肌动蛋白,并且该复合物表现为F-肌动蛋白核,在自发聚合可忽略不计的条件下产生肌动蛋白丝。突触素I的这些作用受到该蛋白位点特异性磷酸化的显著影响。提出了一种荧光数据的原始转换方法,该方法估计肌动蛋白单体向临界浓度的消失速率,并证明其对肌动蛋白结合蛋白的研究具有普遍用途。

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