Ye Yiming, Lee Hsiau-Wei, Yang Wei, Shealy Sarah, Yang Jenny J
Department of Chemistry, Center for Drug Design and Advanced Biotechnology, Georgia State University, Atlanta, Georgia 30303, USA.
J Am Chem Soc. 2005 Mar 23;127(11):3743-50. doi: 10.1021/ja042786x.
Ca2+ binding is essential for the biological functions of calmodulin (CaM) as a trigger/sensor protein to regulate many biological processes in the Ca2+ -signaling cascade. A challenge in understanding the mechanism of Ca2+ signaling is to obtain site-specific information about the Ca2+ binding properties of individual Ca2+ -binding sites of EF-hand proteins, especially for CaM. In this paper, we report the first estimation of the intrinsic Ca2+ affinities of the four EF-hand loops of calmoduin (I-IV) by individually grafting into the domain 1 of CD2. Taking advantage of the Trp residues in the host protein, we first determined metal-binding affinities for Tb3+, Ca2+, and La3+ for all four grafted EF-loops using Tb3+ aromatic resonance energy transfer. EF-loop I exhibits the strongest binding affinity for Ca2+, La3+, and Tb3+, while EF-loop IV has the weakest metal-binding affinity. EF-loops I-IV of CaM have dissociation constants for Ca2+ of 34, 245, 185, and 814 microM, respectively, with the order I > III approximately equal to II > IV. These findings support a charge-ligand-balanced model in which both the number of negatively charged ligand residues and the balanced electrostatic dentate-dentate repulsion by the adjacent charged residues are two major determinants for the relative Ca2+ -binding affinities of EF-loops in CaM. Our grafting method provides a new strategy to obtain site-specific Ca2+ binding properties and a better estimation of the cooperativity and conformational change contributions of coupled EF-hand proteins.
钙离子结合对于钙调蛋白(CaM)作为触发/传感蛋白在钙离子信号级联反应中调节许多生物学过程的生物学功能至关重要。理解钙离子信号传导机制的一个挑战是获得有关EF手型蛋白单个钙离子结合位点,尤其是钙调蛋白的钙离子结合特性的位点特异性信息。在本文中,我们通过将钙调蛋白的四个EF手环(I-IV)分别嫁接到CD2的结构域1中,首次估算了它们的固有钙离子亲和力。利用宿主蛋白中的色氨酸残基,我们首先使用Tb3+芳香共振能量转移测定了所有四个嫁接的EF手环对Tb3+、Ca2+和La3+的金属结合亲和力。EF手环I对Ca2+、La3+和Tb3+表现出最强的结合亲和力,而EF手环IV的金属结合亲和力最弱。钙调蛋白的EF手环I-IV对Ca2+的解离常数分别为34、245、185和814 microM,顺序为I > III ≈ II > IV。这些发现支持了一种电荷-配体平衡模型,其中带负电荷的配体残基数量以及相邻带电残基的平衡静电齿-齿排斥是钙调蛋白中EF手环相对钙离子结合亲和力的两个主要决定因素。我们的嫁接方法提供了一种获取位点特异性钙离子结合特性的新策略,以及对耦合EF手型蛋白的协同性和构象变化贡献的更好估算。