Satyshur K A, Rao S T, Pyzalska D, Drendel W, Greaser M, Sundaralingam M
Department of Biochemistry, College of Agriculture and Life Sciences, University of Wisconsin, Madison 53706.
J Biol Chem. 1988 Feb 5;263(4):1628-47.
The structure of troponin C has been refined at 2A resolution to an R value of 0.172 using a total of 8,100 reflections. Troponin C has an unusual dumbbell shape with only the two C-domain high affinity sites III and IV occupied with metals, while the pair of N-domain low affinity sites I and II are devoid of metals. The coordination of the Ca2+ approaches seven with the last glutamic acid residue in each site forming an asymmetric bidentate ligand. The flanking helices in the metal-bound EF hands are in similar orientation (both 113 degrees) while in the apo sites they are more obtuse (134 and 149 degrees). The EF hands of holo sites III and IV are similar while the apo sites I and II are less similar (rms for backbone atoms, 0.78 and 1.44). The half-loops of the 12-residue holo and apo sites show better agreement than the full loops themselves, suggesting a hinge motion at the midpoint of the loops. The long central helix is stabilized by electrostatic interactions and salt bridges between charged side chains spaced at 3 or 4 residues along the helix. A cluster of water molecules encircle the long helix and hydrogen bond to the backbone carbonyls. At the beginning of the B-helix, a water molecule is interposed at each of two consecutive backbone NH...OC hydrogen bonds. The terminal pair of helices A/D (apo) match with E/H (holo), and the internal pair of helices B/C (apo) match with F/G (holo). Thus, muscle contraction may be triggered by Ca2+ binding to loops I and II which results in a concerted rearrangement of residues in the loops, including the essential Gly at position 6 in each loop. This rearrangement than causes a reorientation of helices B and C along with the BC linker.
肌钙蛋白C的结构已在2埃分辨率下进行了精修,使用总共8100个反射,R值为0.172。肌钙蛋白C具有不寻常的哑铃形状,只有两个C结构域的高亲和力位点III和IV被金属占据,而一对N结构域的低亲和力位点I和II没有金属。Ca2+的配位接近七个,每个位点的最后一个谷氨酸残基形成不对称双齿配体。金属结合的EF手型结构中的侧翼螺旋方向相似(均为113度),而在无金属位点中它们更为钝角(分别为134度和149度)。全金属结合位点III和IV的EF手型结构相似,而无金属位点I和II的相似性较低(主链原子的均方根偏差,分别为0.78和1.44)。12个残基的全金属结合和无金属位点的半环比完整环本身的一致性更好,表明在环的中点处存在铰链运动。长的中央螺旋通过沿螺旋每隔3或4个残基的带电侧链之间的静电相互作用和盐桥得以稳定。一簇水分子环绕着长螺旋并与主链羰基形成氢键。在B螺旋的起始处,一个水分子插入两个连续的主链NH...OC氢键中的每一个。螺旋A/D(无金属)的末端对与E/H(全金属结合)匹配,内部对螺旋B/C(无金属)与F/G(全金属结合)匹配。因此,肌肉收缩可能由Ca2+结合到环I和II引发,这导致环中残基的协同重排,包括每个环中第6位的必需甘氨酸。这种重排进而导致螺旋B和C以及BC连接体的重新定向。