Dardenne Laurent E, Werneck Araken S, de Oliveira Neto Marçal, Bisch Paulo M
Instituto de Biofísica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro-UFRJ, CCS, Bloco G, Ilha do Fundão, 21949-900 Rio de Janeiro, RJ, Brazil.
Proteins. 2003 Aug 1;52(2):236-53. doi: 10.1002/prot.10368.
We present an analysis of the electrostatic properties in the catalytic site of papain (EC 3.4.22.2), an archetype enzyme of the C1 cysteine proteinase family, and we investigate their possible role in the formation, stabilization and regulation of the Cys25((-))...His159((+)) catalytic ion pair. The electrostatic properties were computed using a reassociation method based in multicentered multipolar expansions obtained from ab initio quantum calculations of overlapping protein fragments. Solvent effects were introduced by coupling the use of multicentered multipolar expansions to two continuum boundary element methods to solve the Poisson and the linearized Poisson-Boltzmann equations. The electrostatic profile found in the proton transfer region of papain showed that this enzyme has a well-defined electrostatic environment to favor the formation and stabilization of the catalytic ion pair. The papain catalytic site electrostatic profile can be considered as an electrostatic fingerprint of the papain family with the following characteristics: (i) the presence of a net electric field highly aligned in the (Cys25)-SG-->(His159)-ND1 direction; (ii) the electrostatic profile has a saddle-point character; (iii) it is basically a local environmental effect. Furthermore, our analysis describes a possible regulatory mechanism (the E(SG-->ND1) attenuation effect) controlling the ion pair reactivity and permits to infer the Asp57 acidic residue as the most probable candidate to act as the electrostatic modulator.
我们对木瓜蛋白酶(EC 3.4.22.2)催化位点的静电性质进行了分析,木瓜蛋白酶是C1半胱氨酸蛋白酶家族的典型酶,我们研究了它们在Cys25(-)...His159(+)催化离子对的形成、稳定和调节中可能发挥的作用。使用基于重叠蛋白质片段的从头算量子计算得到的多中心多极展开的重新关联方法计算静电性质。通过将多中心多极展开与两种连续介质边界元方法相结合来引入溶剂效应,以求解泊松方程和线性化泊松-玻尔兹曼方程。在木瓜蛋白酶质子转移区域发现的静电分布表明,该酶具有明确的静电环境,有利于催化离子对的形成和稳定。木瓜蛋白酶催化位点的静电分布可被视为木瓜蛋白酶家族的静电指纹,具有以下特征:(i)存在一个在(Cys25)-SG→(His159)-ND1方向上高度对齐的净电场;(ii)静电分布具有鞍点特征;(iii)它基本上是一种局部环境效应。此外,我们的分析描述了一种可能的调节机制(E(SG→ND1)衰减效应),可控制离子对的反应性,并允许推断Asp57酸性残基是最有可能作为静电调节剂的候选者。