Peters Martin B, Yang Yue, Wang Bing, Füsti-Molnár László, Weaver Michael N, Merz Kenneth M
Department of Chemistry, Quantum Theory Project, 2328 New Physics Building, PO Box 118435, University of Florida, Gainesville, Florida 32611-8435.
J Chem Theory Comput. 2010 Sep 14;6(9):2935-2947. doi: 10.1021/ct1002626.
Currently the Protein Data Bank (PDB) contains over 18,000 structures that contain a metal ion including Na, Mg, K, Ca, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, Pd, Ag, Cd, Ir, Pt, Au, and Hg. In general, carrying out classical molecular dynamics (MD) simulations of metalloproteins is a convoluted and time consuming process. Herein, we describe MCPB (Metal Center Parameter Builder), which allows one, to conveniently and rapidly incorporate metal ions using the bonded plus electrostatics model (Hoops et al., J. Am. Chem. Soc. 1991, 113, 8262-8270) into the AMBER Force Field (FF). MCPB was used to develop a Zinc FF, ZAFF, which is compatible with the existing AMBER FFs. The PDB was mined for all Zn containing structures with most being tetrahedrally bound. The most abundant primary shell ligand combinations were extracted and FFs were created. These include Zn bound to CCCC, CCCH, CCHH, CHHH, HHHH, HHHO, HHOO, HOOO, HHHD, and HHDD (O = water and the remaining are 1 letter amino acid codes). Bond and angle force constants and RESP charges were obtained from B3LYP/6-31G* calculations of model structures from the various primary shell combinations. MCPB and ZAFF can be used to create FFs for MD simulations of metalloproteins to study enzyme catalysis, drug design and metalloprotein crystal refinement.
目前,蛋白质数据库(PDB)包含超过18000个含有金属离子的结构,这些金属离子包括钠、镁、钾、钙、钒、铬、锰、铁、钴、镍、铜、锌、钯、银、镉、铱、铂、金和汞。一般来说,对金属蛋白进行经典分子动力学(MD)模拟是一个复杂且耗时的过程。在此,我们描述了MCPB(金属中心参数构建器),它允许使用键合加静电模型(Hoops等人,《美国化学会志》,1991年,113卷,8262 - 8270页)将金属离子方便快捷地纳入AMBER力场(FF)。MCPB被用于开发一种锌力场ZAFF,它与现有的AMBER力场兼容。在PDB中挖掘所有含锌结构,其中大多数是四面体配位的。提取了最丰富的一级配位层配体组合并创建了力场。这些组合包括锌与CCCC、CCCH、CCHH、CHHH、HHHH、HHHO、HHOO、HOOO、HHHD和HHDD配位(O = 水,其余为单字母氨基酸代码)。键和角度力常数以及RESP电荷是通过对各种一级配位层组合的模型结构进行B3LYP/6 - 31G*计算得到的。MCPB和ZAFF可用于创建用于金属蛋白MD模拟的力场,以研究酶催化、药物设计和金属蛋白晶体精修。