Favia Angelo Danilo, Cavalli Andrea, Masetti Matteo, Carotti Angelo, Recanatini Maurizio
Department of Medicinal Chemistry, University of Bari, Via E. Orabona 4, I-70124 Bari, Italy.
Proteins. 2006 Mar 1;62(4):1074-87. doi: 10.1002/prot.20829.
Mammalian cytochromes P450 (CYP) are enzymes of great biological and pharmaco-toxicological relevance. Due to their membrane-bound nature, the structural characterization of these proteins is extremely difficult, and therefore computational techniques, such as comparative modeling, may help obtaining reliable structures of members of this family. An important feature of CYP is the presence of an iron-containing porphyrin group at the enzyme active site. This calls for quantum chemical calculations to derive charges and parameters suitable for classical force field-based investigations of this proteins family. In this report, we first carried out density functional theory (DFT) computations to derive suitable charges for the Fe2+-containing heme group of P450 enzymes. Then, by means of the homology modeling technique, and taking advantage of the recently published crystal structure of the human CYP2C9, we built a new model of the human aromatase (CYP19) enzyme. Furthermore, to study the thermal stability of the new model as well as to test the suitability of the new DFT-based heme parameters, molecular dynamics (MD) simulations were carried out on both CYP2C9 and CYP19. Finally, the last few ns of aromatase MD trajectories were investigated following the essential dynamics protocol that allowed the detection of some correlated motions among some protein domains.
哺乳动物细胞色素P450(CYP)是具有重要生物学和药物毒理学意义的酶。由于其膜结合性质,这些蛋白质的结构表征极其困难,因此计算技术,如比较建模,可能有助于获得该家族成员的可靠结构。CYP的一个重要特征是在酶活性位点存在含铁卟啉基团。这就需要进行量子化学计算,以得出适合基于经典力场对该蛋白质家族进行研究的电荷和参数。在本报告中,我们首先进行了密度泛函理论(DFT)计算,以得出适合P450酶含Fe2+血红素基团的电荷。然后,通过同源建模技术,并利用最近发表的人CYP2C9晶体结构,我们构建了人芳香化酶(CYP19)的新模型。此外,为了研究新模型的热稳定性以及测试基于DFT的新血红素参数的适用性,我们对CYP2C9和CYP19都进行了分子动力学(MD)模拟。最后,按照基本动力学方案对芳香化酶MD轨迹的最后几纳秒进行了研究,该方案能够检测一些蛋白质结构域之间的相关运动。