Ababou A, Shenvi R A, Desjarlais J R
Department of Chemistry, 408 Chandlee Laboratory, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Biochemistry. 2001 Oct 23;40(42):12719-26. doi: 10.1021/bi010405b.
Proteins within the EF-hand protein family exhibit different conformational responses to Ca(2+) binding. Calmodulin and other members of the EF-hand protein family undergo major changes in conformation upon binding Ca(2+). However, some EF-hand proteins, such as calbindin D9k (Clb), bind Ca(2+) without a significant change in conformation. Here, we investigate the effects of replacement of a leucine at position 39 of the N-terminal domain of calmodulin (N-Cam) with a phenylalanine derived from Clb. This variant is studied alone and in the context of other mutations that affect the conformational properties of N-Cam. Strikingly, the introduction of Phe39, which is distant from the calcium binding sites, leads to a significant enhancement of Ca(2+) binding affinity, even in the context of other mutations which trap the protein in the closed form. The results yield novel insights into the evolution of EF-hand proteins as calcium sensors versus calcium buffers.
EF 手型蛋白家族中的蛋白质对钙离子结合表现出不同的构象反应。钙调蛋白和 EF 手型蛋白家族的其他成员在结合钙离子后会发生构象的重大变化。然而,一些 EF 手型蛋白,如钙结合蛋白 D9k(Clb),结合钙离子时构象没有显著变化。在这里,我们研究了用来自 Clb 的苯丙氨酸取代钙调蛋白 N 端结构域(N-Cam)第 39 位的亮氨酸的影响。这个变体单独进行了研究,并且是在影响 N-Cam 构象特性的其他突变的背景下进行研究的。令人惊讶的是,即使在其他使蛋白质处于封闭形式的突变背景下,引入远离钙结合位点的苯丙氨酸 39 也会导致钙离子结合亲和力显著增强。这些结果为 EF 手型蛋白作为钙传感器与钙缓冲剂的进化提供了新的见解。