Starovasnik M A, Su D R, Beckingham K, Klevit R E
Department of Biochemistry, University of Washington, Seattle 98195.
Protein Sci. 1992 Feb;1(2):245-53. doi: 10.1002/pro.5560010206.
Calmodulin is a member of the "EF-hand" family of Ca(2+)-binding proteins. It consists of two homologous globular domains, each containing two helix-loop-helix Ca(2+)-binding sites. To examine the contribution of individual Ca(2+)-binding sites to the Ca(2+)-binding properties of CaM, a series of four site-directed mutants has been studied. In each, the glutamic acid at position 12 in one of the four Ca(2+)-binding loops has been changed to a glutamine. One-dimensional 1H-NMR has been used to monitor Ca(2+)-induced changes in the mutant proteins, and the spectral changes observed for each mutant have been compared to those for wild-type CaM. In this way, the effect of each mutation on both the mutated site and the other Ca(2+)-binding sites has been examined. The mutation of glutamate to glutamine at position 12 in any of the EF-hand Ca(2+)-binding loops greatly decreases the Ca(2+)-binding affinity at that site, yet differs in the overall effects on Ca2+ binding depending on which of the four sites is mutated. When the mutation is in site I, there is only a small decrease in the apparent Ca(2+)-binding affinity of site II, and vice versa. Mutation in either site III or IV results in a large decrease in the apparent Ca(2+)-binding affinities of the partner C-terminal site. In both the N- and C-terminal domains, evidence for altered conformational effects in the partners of mutated sites is presented. In the C-terminus, the conformational consequences of mutating site III or site IV are strikingly different.
钙调蛋白是“EF 手型”钙离子结合蛋白家族的成员。它由两个同源的球状结构域组成,每个结构域包含两个螺旋-环-螺旋钙离子结合位点。为了研究单个钙离子结合位点对钙调蛋白钙离子结合特性的贡献,对一系列四个定点突变体进行了研究。在每个突变体中,四个钙离子结合环之一中第 12 位的谷氨酸被替换为谷氨酰胺。一维 1H-NMR 已被用于监测钙离子诱导的突变蛋白变化,并且将每个突变体观察到的光谱变化与野生型钙调蛋白的光谱变化进行了比较。通过这种方式,研究了每个突变对突变位点和其他钙离子结合位点的影响。在任何一个 EF 手型钙离子结合环中,第 12 位的谷氨酸突变为谷氨酰胺会大大降低该位点的钙离子结合亲和力,但根据四个位点中哪一个发生突变,对钙离子结合的总体影响有所不同。当突变发生在位点 I 时,位点 II 的表观钙离子结合亲和力仅略有下降,反之亦然。位点 III 或位点 IV 中的突变会导致配对的 C 末端位点的表观钙离子结合亲和力大幅下降。在 N 端和 C 端结构域中,都给出了突变位点配对中构象效应改变的证据。在 C 端,突变位点 III 或位点 IV 的构象后果截然不同。