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钙调蛋白捕获中间体的结构:从新视角看EF手型蛋白的钙调节

Structure of a trapped intermediate of calmodulin: calcium regulation of EF-hand proteins from a new perspective.

作者信息

Grabarek Zenon

机构信息

Boston Biomedical Research Institute, Watertown, MA 02472, USA.

出版信息

J Mol Biol. 2005 Mar 11;346(5):1351-66. doi: 10.1016/j.jmb.2005.01.004. Epub 2005 Jan 19.

Abstract

Calmodulin (CaM) is a multifunctional Ca2+-binding protein that regulates the activity of many enzymes in response to changes in the intracellular Ca2+ concentration. There are two globular domains in CaM, each containing a pair of helix-loop-helix Ca2+-binding motifs called EF-hands. Ca2+-binding induces the opening of both domains thereby exposing hydrophobic pockets that provide binding sites for the target enzymes. Here, I present a 2.4 A resolution structure of a calmodulin mutant (CaM41/75) in which the N-terminal domain is locked in the closed conformation by a disulfide bond. CaM41/75 crystallized in a tetragonal lattice with the Ca2+ bound in all four EF-hands. In the closed N-terminal domain Ca ions are coordinated by the four protein ligands in positions 1, 3, 5 and 7 of the loop, and by two solvent ligands. The glutamate side-chain in the 12th position of the loop (Glu31 in site I and Glu67 in site II), which in the wild-type protein provides a bidentate Ca2+ ligand, remains in a distal position. Based on a comparison of CaM41/75 with other CaM and troponin C structures a detailed two-step mechanism of the Ca2+-binding process is proposed. Initially, the Ca2+ binds to the N-terminal part of the loop, thus generating a rigid link between the incoming helix (helix A, or helix C) and the central beta structure involving the residues in the sixth, seventh and eighth position of the loop. Then, the exiting helix (helix B or helix D) rotates causing the glutamate ligand in the 12th position to move into the vicinity of the immobilized Ca2+. An adjustment of the phi, psi backbone dihedral angles of the Ile residue in the eighth position is necessary and sufficient for the helix rotation and functions as a hinge. The model allows for a significant independence of the Ca2+-binding sites in a two-EF-hand domain.

摘要

钙调蛋白(CaM)是一种多功能的Ca2+结合蛋白,可响应细胞内Ca2+浓度的变化来调节多种酶的活性。CaM中有两个球状结构域,每个结构域都包含一对称为EF手的螺旋-环-螺旋Ca2+结合基序。Ca2+结合会诱导两个结构域都打开,从而暴露出为靶酶提供结合位点的疏水口袋。在此,我展示了一种钙调蛋白突变体(CaM41/75)的2.4埃分辨率结构,其中N端结构域通过二硫键锁定在闭合构象中。CaM41/75在四方晶格中结晶,所有四个EF手中都结合有Ca2+。在闭合的N端结构域中,Ca离子由环中第1、3、5和7位的四个蛋白质配体以及两个溶剂配体配位。环中第12位的谷氨酸侧链(位点I中的Glu31和位点II中的Glu67),在野生型蛋白中提供双齿Ca2+配体,其仍处于远端位置。基于CaM41/75与其他CaM和肌钙蛋白C结构的比较,提出了Ca2+结合过程的详细两步机制。最初,Ca2+结合到环的N端部分,从而在进入的螺旋(螺旋A或螺旋C)与涉及环中第6、7和8位残基的中央β结构之间产生刚性连接。然后,离开的螺旋(螺旋B或螺旋D)旋转,导致第12位的谷氨酸配体移动到固定的Ca2+附近。第八位Ile残基的phi、psi主链二面角的调整对于螺旋旋转是必要且充分的,并起铰链的作用。该模型允许两个EF手结构域中的Ca2+结合位点具有显著的独立性。

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