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74 kDa蛋白(肌动蛋白切割蛋白)的钙离子依赖性肌动蛋白丝切割活性位于其氨基末端的一半区域。

The Ca2(+)-dependent actin filament-severing activity of 74-kDa protein (adseverin) resides in its NH2-terminal half.

作者信息

Sakurai T, Kurokawa H, Nonomura Y

机构信息

Department of Pharmacology, Faculty of Medicine, University of Tokyo, Japan.

出版信息

J Biol Chem. 1991 Mar 5;266(7):4581-5.

PMID:1847925
Abstract

Calcium sensitive actin severing protein, adseverin, with Mr 74,000, was cleaved into two fragments of Mr 42,000 and Mr 39,000 by V8 protease and trypsin, and both fragments were purified by high performance (pressure) liquid chromatography ion-exchange column chromatography. To understand how adseverin can sever actin filaments, we identified the actin-binding domains. The NH2 termini of native adseverin and the Mr 42,000 fragment were confirmed to be blocked by amino acid sequencing. Twelve amino acids of the Mr 39,000 fragment were sequenced from the NH2 terminus; the sequence of this part had a homology to the hinge region between segments 3 and 4 of gelsolin and villin. Thus, the Mr 42,000 fragment is the NH2-terminal half (N42), and the Mr 39,000 fragment is the COOH-terminal half (C39). Each fragment was examined for actin-severing, -nucleating, -capping, and phospholipid binding activities with and without calcium. N42 contained a calcium-dependent actin-severing activity regulated by phospholipid. C39 bound to G-actin in a calcium-dependent manner, but had no severing activity. The sequence homology and similar functional domain structure suggest a common structural basis for the calcium- and phospholipid-regulated actin-severing properties shared by adseverin, gelsolin, and villin.

摘要

钙敏感肌动蛋白切割蛋白,即74000分子量的adseverin,被V8蛋白酶和胰蛋白酶切割成两个片段,分子量分别为42000和39000,且这两个片段都通过高效(压)液相色谱离子交换柱色谱法进行了纯化。为了了解adseverin如何切割肌动蛋白丝,我们鉴定了肌动蛋白结合结构域。通过氨基酸测序证实天然adseverin和42000分子量片段的NH2末端被封闭。从NH2末端对39000分子量片段的12个氨基酸进行了测序;该部分序列与凝溶胶蛋白和绒毛蛋白第3和第4节段之间的铰链区具有同源性。因此,42000分子量片段是NH2末端半段(N42),39000分子量片段是COOH末端半段(C39)。分别检测了每个片段在有钙和无钙情况下的肌动蛋白切割、成核、封端和磷脂结合活性。N42具有受磷脂调节的钙依赖性肌动蛋白切割活性。C39以钙依赖性方式与G-肌动蛋白结合,但没有切割活性。序列同源性和相似的功能结构域结构表明,adseverin、凝溶胶蛋白和绒毛蛋白在钙和磷脂调节的肌动蛋白切割特性方面具有共同的结构基础。

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