Finley Natosha L, Howarth Jack W, Rosevear Paul R
Department of Molecular Genetics, Biochemistry, and Microbiology, University of Cincinnati, College of Medicine, 231 Albert Sabin Way, Medical Sciences Building, Cincinnati Ohio 45267-0524, USA.
Biochemistry. 2004 Sep 14;43(36):11371-9. doi: 10.1021/bi049672i.
Cardiac troponin C (cTnC) is the Ca(2+)-binding component of the troponin complex and, as such, is the Ca(2+)-dependent switch in muscle contraction. This protein consists of two globular lobes, each containing a pair of EF-hand metal-binding sites, connected by a linker. In the N lobe, Ca(2+)-binding site I is inactive and Ca(2+)-binding site II is primarily responsible for initiation of muscle contraction. The C lobe contains Ca(2+)/Mg(2+)-binding sites III and IV, which bind Mg(2+) with lower affinity and play a structural as well as a secondary role in modulating the Ca(2+) signal. To understand the structural consequences of Ca(2+)/Mg(2+) exchange in the C lobe, we have determined the NMR solution structure of the Mg(2+)-loaded C lobe, cTnC(81-161), in a complex with the N domain of cardiac troponin I, cTnI(33-80), and compared it with a refined Ca(2+)-loaded structure. The overall tertiary structure of the Mg(2+)-loaded C lobe is very similar to that of the refined Ca(2+)-loaded structure as evidenced by the root-mean-square deviation of 0.94 A for all backbone atoms. While metal-dependent conformational changes are minimal, substitution of Mg(2+) for Ca(2+) is characterized by condensation of the C-terminal portion of the metal-binding loops with monodentate Mg(2+) ligation by the conserved Glu at position 12 and partial closure of the cTnI hydrophobic binding cleft around site IV. Thus, conformational plasticity in the Ca(2+)/Mg(2+)-dependent binding loops may represent a mechanism to modulate C-lobe cTnC interactions with the N domain of cTnI.
心肌肌钙蛋白C(cTnC)是肌钙蛋白复合物中与Ca(2+)结合的成分,因此是肌肉收缩中依赖Ca(2+)的开关。该蛋白由两个球状叶组成,每个叶包含一对EF手型金属结合位点,通过一个连接子相连。在N叶中,Ca(2+)结合位点I无活性,Ca(2+)结合位点II主要负责启动肌肉收缩。C叶包含Ca(2+)/Mg(2+)结合位点III和IV,它们与Mg(2+)的结合亲和力较低,在调节Ca(2+)信号方面起结构和次要作用。为了了解C叶中Ca(2+)/Mg(2+)交换的结构后果,我们确定了与心肌肌钙蛋白I的N结构域(cTnI(33 - 80))形成复合物的Mg(2+)负载的C叶(cTnC(81 - 161))的核磁共振溶液结构,并将其与优化后的Ca(2+)负载结构进行比较。Mg(2+)负载的C叶的整体三级结构与优化后的Ca(2+)负载结构非常相似,所有主链原子的均方根偏差为0.94 Å即可证明。虽然金属依赖性构象变化很小,但用Mg(2+)替代Ca(2+)的特征是金属结合环的C末端部分缩合,由第12位保守的Glu进行单齿Mg(2+)连接,以及围绕位点IV的cTnI疏水结合裂隙部分闭合。因此,Ca(2+)/Mg(2+)依赖性结合环中的构象可塑性可能代表了一种调节C叶cTnC与cTnI的N结构域相互作用的机制。