Department of Chemistry, Washington University in St. Louis, St. Louis, Missouri 63130, USA.
Biochemistry. 2011 Jun 21;50(24):5426-35. doi: 10.1021/bi200377c. Epub 2011 May 26.
Troponin C (TnC), present in all striated muscle, is the Ca(2+)-activated trigger that initiates myocyte contraction. The binding of Ca(2+) to TnC initiates a cascade of conformational changes involving the constituent proteins of the thin filament. The functional properties of TnC and its ability to bind Ca(2+) have significant regulatory influence on the contractile reaction of muscle. Changes in TnC may also correlate with cardiac and various other muscle-related diseases. We report here the implementation of the PLIMSTEX strategy (protein ligand interaction by mass spectrometry, titration, and H/D exchange) to elucidate the binding affinity of TnC with Ca(2+) and, more importantly, to determine the order of Ca(2+) binding of the four EF hands of the protein. The four equilibrium constants, K(1) = (5 ± 5) × 10(7) M(-1), K(2) = (1.8 ± 0.8) × 10(7) M(-1), K(3) = (4.2 ± 0.9) × 10(6) M(-1), and K(4) = (1.6 ± 0.6) × 10(6) M(-1), agree well with determinations by other methods and serve to increase our confidence in the PLIMSTEX approach. We determined the order of binding to the four EF hands to be III, IV, II, and I by extracting from the H/DX results the deuterium patterns for each EF hand for each state of the protein (apo through fully Ca(2+) bound). This approach, demonstrated for the first time, may be general for determining binding orders of metal ions and other ligands to proteins.
肌钙蛋白 C(TnC)存在于所有横纹肌中,是触发肌细胞收缩的 Ca(2+) 激活触发器。Ca(2+) 与 TnC 的结合引发涉及细肌丝组成蛋白的构象变化级联。TnC 的功能特性及其与 Ca(2+) 的结合能力对肌肉的收缩反应具有重要的调节作用。TnC 的变化也可能与心脏和各种其他肌肉相关疾病相关。我们在这里报告了实施 PLIMSTEX 策略(通过质谱、滴定和 H/D 交换研究蛋白质配体相互作用)的情况,以阐明 TnC 与 Ca(2+) 的结合亲和力,更重要的是,确定该蛋白四个 EF 手的 Ca(2+) 结合顺序。四个平衡常数,K(1) = (5 ± 5) × 10(7) M(-1),K(2) = (1.8 ± 0.8) × 10(7) M(-1),K(3) = (4.2 ± 0.9) × 10(6) M(-1),和 K(4) = (1.6 ± 0.6) × 10(6) M(-1),与其他方法的测定结果吻合良好,这增加了我们对 PLIMSTEX 方法的信心。我们通过从 H/DX 结果中提取每个 EF 手在蛋白质每个状态(从 apo 到完全 Ca(2+) 结合)的氘标记模式,确定了四个 EF 手的结合顺序为 III、IV、II 和 I。这种方法首次得到证实,可能适用于确定金属离子和其他配体与蛋白质的结合顺序。