From the Departments of Biochemistry and Molecular Biology, Mayo Clinic College of Medicine, Rochester, Minnesota 55905.
From the Departments of Biochemistry and Molecular Biology, Mayo Clinic College of Medicine, Rochester, Minnesota 55905.
J Biol Chem. 2010 Feb 5;285(6):4015-4024. doi: 10.1074/jbc.M109.060491. Epub 2009 Dec 7.
Using solution NMR spectroscopy, we obtained the structure of Ca(2+)-calmodulin (holoCaM) in complex with peptide C28 from the binding domain of the plasma membrane Ca(2+)-ATPase (PMCA) pump isoform 4b. This provides the first atomic resolution insight into the binding mode of holoCaM to the full-length binding domain of PMCA. Structural comparison of the previously determined holoCaM.C20 complex with this holoCaM.C28 complex supports the idea that the initial binding step is represented by (holoCaM.C20) and the final bound complex by (holoCaM.C28). This affirms the existing multi-step kinetic model of PMCA4b activation by CaM. The complex exhibits a new binding motif in which holoCaM is wrapped around helical C28 peptide using two anchoring residues from the peptide at relative positions 18 and 1. The anchors correspond to Phe-1110 and Trp-1093, respectively, in full-length PMCA4b, and the peptide and CaM are oriented in an anti-parallel manner. This is a greater sequence distance between anchors than in any of the known holoCaM complexes with a helical peptide. Analysis of the geometry of holoCaM-peptide binding for the cases where the target peptide adopts an alpha(D)-helix with its anchors buried in the main hydrophobic pockets of the two CaM lobes establishes that only relative sequential positions of 10, 14, 17, and 18 are allowed for the second anchor.
利用溶液核磁共振波谱法,我们获得了与质膜 Ca2+-ATP 酶(PMCA)泵亚型 4b 的结合域结合的 Ca2+-钙调蛋白(全钙调蛋白)与肽 C28 的复合物结构。这首次提供了全钙调蛋白与 PMCA 全长结合域结合模式的原子分辨率见解。先前确定的全钙调蛋白.C20 复合物与该全钙调蛋白.C28 复合物的结构比较支持以下观点,即初始结合步骤由(全钙调蛋白.C20)表示,最终结合复合物由(全钙调蛋白.C28)表示。这证实了 CaM 激活 PMCA4b 的现有多步动力学模型。该复合物表现出一种新的结合模式,其中全钙调蛋白使用来自肽的相对位置 18 和 1 的两个锚定残基缠绕螺旋 C28 肽。这些锚定点分别对应于全长 PMCA4b 中的苯丙氨酸 1110 和色氨酸 1093,并且肽和钙调蛋白呈反平行取向。与任何已知的具有螺旋肽的全钙调蛋白复合物相比,这种锚定点之间的序列距离更大。对目标肽采用α(D)-螺旋且其锚定点埋藏在两个钙调蛋白叶的主要疏水区的情况下的全钙调蛋白-肽结合的几何形状进行分析,确定仅允许第二个锚定点的相对顺序位置 10、14、17 和 18。