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梭菌毒素对凝溶胶蛋白-肌动蛋白复合物的ADP核糖基化作用。

ADP-ribosylation of gelsolin-actin complexes by clostridial toxins.

作者信息

Wille M, Just I, Wegner A, Aktories K

机构信息

Rudolf-Buchheim-Institut für Pharmakologie der Universität Giessen, Germany.

出版信息

J Biol Chem. 1992 Jan 5;267(1):50-5.

PMID:1309748
Abstract

ADP-ribosylation of the 1:1 (G-A) and 1:2 (G-A-A) gelsolin-actin complexes by Clostridium perfringens iota toxin and Clostridium botulinum C2 toxin was studied. Iota toxin ADP-ribosylated actin in the G-A complex from human platelets as effectively as skeletal muscle actin. The Km for NAD (4 microM) was identical for both substrates. C2 toxin ADP-ribosylated actin in the G-A complex with lower efficacy than nonmuscle actin from platelet cytosol. In the G-A-A complex both actin molecules were ADP-ribosylated by iota toxin. The G-A complex bound ADP-ribosylated actin (Ar) to form the G-A-Ar complex in which the weakly bound actin is ADP-ribosylated. Vice versa, ADP-ribosylated 1:1 gelsolin-actin complex (G-Ar) was able to bind unmodified actin to yield the G-Ar-A complex. ADP-ribosylation did not change the nucleation activity of either the G-Ar complex or the G-Ar-A complex. When monomeric actin was added to the G-A-Ar complex, polymerization of actin was delayed by about 10 min. According to a quantitative kinetic analysis, the delay of polymerization corresponded to the rate of dissociation of ADP-ribosylated actin from the G-A-Ar complex. This suggests that the nucleation activity of the G-A-A complex is inhibited by ADP-ribosylation of the weakly bound actin and that the inhibition can be removed by dissociation of ADP-ribosylated actin from the G-A-Ar complex.

摘要

研究了产气荚膜梭菌iota毒素和肉毒梭菌C2毒素对1:1(G-A)和1:2(G-A-A)凝溶胶蛋白-肌动蛋白复合物的ADP核糖基化作用。Iota毒素对人血小板G-A复合物中的肌动蛋白进行ADP核糖基化的效果与骨骼肌肌动蛋白相同。两种底物的NAD Km(4 microM)相同。C2毒素对G-A复合物中的肌动蛋白进行ADP核糖基化的效率低于血小板胞质溶胶中的非肌肉肌动蛋白。在G-A-A复合物中,两种肌动蛋白分子都被iota毒素进行了ADP核糖基化。G-A复合物结合ADP核糖基化肌动蛋白(Ar)形成G-A-Ar复合物,其中弱结合的肌动蛋白被ADP核糖基化。反之,ADP核糖基化的1:1凝溶胶蛋白-肌动蛋白复合物(G-Ar)能够结合未修饰的肌动蛋白,产生G-Ar-A复合物。ADP核糖基化不会改变G-Ar复合物或G-Ar-A复合物的成核活性。当向G-A-Ar复合物中加入单体肌动蛋白时,肌动蛋白的聚合延迟约10分钟。根据定量动力学分析,聚合延迟对应于ADP核糖基化肌动蛋白从G-A-Ar复合物中的解离速率。这表明,弱结合肌动蛋白的ADP核糖基化抑制了G-A-A复合物的成核活性,并且通过ADP核糖基化肌动蛋白从G-A-Ar复合物中的解离可以消除这种抑制作用。

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