Wriggers W, Mehler E, Pitici F, Weinstein H, Schulten K
Department of Physics and Beckman Institute, University of Illinois at Urbana-Champaign, Urbana 61801, USA.
Biophys J. 1998 Apr;74(4):1622-39. doi: 10.1016/S0006-3495(98)77876-2.
To characterize the dynamic behavior of calmodulin in solution, we have carried out molecular dynamics (MD) simulations of the Ca2+-loaded structure. The crystal structure of calmodulin was placed in a solvent sphere of radius 44 A, and 6 Cl- and 22 Na+ ions were included to neutralize the system and to model a 150 mM salt concentration. The total number of atoms was 32,867. During the 3-ns simulation, the structure exhibits large conformational changes on the nanosecond time scale. The central alpha-helix, which has been shown to unwind locally upon binding of calmodulin to target proteins, bends and unwinds near residue Arg74. We interpret this result as a preparative step in the more extensive structural transition observed in the "flexible linker" region 74-82 of the central helix upon complex formation. The major structural change is a reorientation of the two Ca2+-binding domains with respect to each other and a rearrangement of alpha-helices in the N-terminus domain that makes the hydrophobic target peptide binding site more accessible. This structural rearrangement brings the domains to a more favorable position for target binding, poised to achieve the orientation observed in the complex of calmodulin with myosin light-chain kinase. Analysis of solvent structure reveals an inhomogeneity in the mobility of water in the vicinity of the protein, which is attributable to the hydrophobic effect exerted by calmodulin's binding sites for target peptides.
为了表征溶液中钙调蛋白的动态行为,我们对钙离子负载结构进行了分子动力学(MD)模拟。将钙调蛋白的晶体结构置于半径为44 Å的溶剂球中,并加入6个Cl-和22个Na+离子以中和系统并模拟150 mM的盐浓度。原子总数为32,867个。在3纳秒的模拟过程中,该结构在纳秒时间尺度上表现出较大的构象变化。已证明当钙调蛋白与靶蛋白结合时会局部解旋的中央α螺旋,在残基Arg74附近弯曲并解旋。我们将此结果解释为在中央螺旋74 - 82的“柔性连接子”区域形成复合物时观察到的更广泛结构转变的一个准备步骤。主要的结构变化是两个钙离子结合结构域彼此之间的重新定向以及N端结构域中α螺旋的重排,这使得疏水靶肽结合位点更易接近。这种结构重排使结构域处于更有利于靶标结合的位置,随时准备达到在钙调蛋白与肌球蛋白轻链激酶复合物中观察到的取向。对溶剂结构的分析揭示了蛋白质附近水分子流动性的不均匀性,这归因于钙调蛋白靶肽结合位点所施加的疏水效应。