Khrenova Maria G, Nemukhin Alexander V, Grigorenko Bella L, Wang Peng, Zhang Jian-Ping
Department of Chemistry, M.V. Lomonosov Moscow State University, Leninskie Gory 1/3, Moscow, 119991, Russian Federation.
J Mol Model. 2014 Jun;20(6):2287. doi: 10.1007/s00894-014-2287-4. Epub 2014 May 23.
Computationally derived structures of the photosynthetic core complex composed of the light-harvesting (LH) system LH1 and the reaction center (RC) from a thermophilic purple sulfur bacterium Thermochromatium tepidum are reported providing first models of the LH1 system at atomic resolution. We used the known primary structure of α and β polypeptides from this particular LH1 complex and the related bacterial LH templates to design the LH1 torus composed of 16 αβ subunits trapping bacteriochlorophyll (BChl-a) dimers and carotenoid molecules. The macromolecule of RC was placed in the center of the ring and the LH1-RC complex was inserted inside the lipid bilayer to simulate the membrane environment. Since thermal stability of the LH1-RC complex is linked to Ca(2+) binding by the complex, location of trapping sites of calcium ions in the LH1 polypeptides is examined by using molecular dynamics simulations of the entire system solvated in water with CaCl2 molecules in the system. The newly predicted Ca(2+) trapping sites can be responsible for attractive interaction of neighboring αβ subunits of LH1 with relevance to stability of the calcium-bound LH1-RC complex.
报道了由嗜热紫色硫细菌嗜热栖热菌的光捕获(LH)系统LH1和反应中心(RC)组成的光合核心复合物的计算推导结构,提供了原子分辨率下LH1系统的首个模型。我们利用来自这种特定LH1复合物的α和β多肽的已知一级结构以及相关细菌LH模板,设计了由16个αβ亚基组成的LH1环面,其捕获细菌叶绿素(BChl-a)二聚体和类胡萝卜素分子。将RC大分子置于环的中心,并将LH1-RC复合物插入脂质双层内部以模拟膜环境。由于LH1-RC复合物的热稳定性与复合物对Ca(2+)的结合有关,通过对整个系统在水中与系统中的CaCl2分子一起进行分子动力学模拟,研究了LH1多肽中钙离子捕获位点的位置。新预测的Ca(2+)捕获位点可能与结合钙的LH1-RC复合物的稳定性相关,负责LH1相邻αβ亚基之间的吸引力相互作用。