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凝溶胶蛋白激活过程中结构域结合位点与钙结合位点的协同作用。

Co-operation of domain-binding and calcium-binding sites in the activation of gelsolin.

作者信息

Lagarrigue Emeline, Maciver Sutherland K, Fattoum Abdellatif, Benyamin Yves, Roustan Claude

机构信息

UMR 5539 (CNRS), Laboratoire de motilité cellulaire (Ecole Pratique des Hautes Etudes), Université de Montpellier 2, France.

出版信息

Eur J Biochem. 2003 May;270(10):2236-43. doi: 10.1046/j.1432-1033.2003.03591.x.

Abstract

Gelsolin is an abundant calcium dependent actin filament severing and capping protein. In the absence of calcium the molecule is compact but in the presence of calcium, as its six similar domains alter their relative position, a generally more open configuration is adopted to reveal the three actin binding sites. It is generally held that a 'helical-latch' at the C-terminus of gelsolin's domain 6 (G6), binds domain 2 (G2) to keep gelsolin in the calcium-free compact state, and that the crutial calcium binding site(s) reside in the C-terminal half of gelsolin perhaps involving the C-terminal helix itself has to be bound to release this latch. Here we provide evidence for a calcium dependent conformational change within G2 (Kd = approximately 15 micro m). We also report a calcium dependent binding site for the C-terminus (G4-6) within G2 and delimit this further to a specific region formed by residues 203-225 and 159-193. It is known that the activation of gelsolin involves multiple calcium binding events (around 6) the first of which (in G6) may release the latch. We propose that the calcium-dependent conformational change in G2 may be a subsequent step that is necessary for the dissociation of G2 from G4-6, and that this movement occurs in sympathy with calcium induced conformational changes within G6 by the physical coupling of the two calcium binding sites within G2 and G6. Additional calcium binding in other domains then result in the complete opening and activation of the gelsolin molecule.

摘要

凝溶胶蛋白是一种丰富的钙依赖性肌动蛋白丝切断和封端蛋白。在没有钙的情况下,该分子呈紧密状态,但在有钙的情况下,由于其六个相似结构域改变了它们的相对位置,通常会采用更开放的构象来暴露三个肌动蛋白结合位点。一般认为,凝溶胶蛋白结构域6(G6)C末端的“螺旋闩锁”将结构域2(G2)结合在一起,使凝溶胶蛋白保持无钙的紧密状态,并且关键的钙结合位点可能位于凝溶胶蛋白的C末端一半,可能涉及C末端螺旋本身,必须结合钙才能释放这个闩锁。在这里,我们提供了G2内钙依赖性构象变化的证据(解离常数=约15微摩尔)。我们还报告了G2内C末端(G4 - 6)的钙依赖性结合位点,并将其进一步限定为由残基203 - 225和159 - 193形成的特定区域。已知凝溶胶蛋白的激活涉及多个钙结合事件(约6个),其中第一个(在G6中)可能释放闩锁。我们提出,G2中钙依赖性构象变化可能是G2与G4 - 6解离所必需的后续步骤,并且这种运动与G6内钙诱导的构象变化同步发生,这是通过G2和G6内两个钙结合位点的物理偶联实现的。其他结构域中额外的钙结合随后导致凝溶胶蛋白分子完全打开并激活。

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