Guvench Olgun
Department of Pharmaceutical Sciences and Administration, School of Pharmacy, Westbrook College of Health Professions, University of New England, 716 Stevens Avenue, Portland, ME 04103, USA.
Molecules. 2024 Jan 19;29(2):494. doi: 10.3390/molecules29020494.
Human cytochrome P450 enzymes (CYPs) are critical for the metabolism of small-molecule pharmaceuticals (drugs). As such, the prediction of drug metabolism by and drug inhibition of CYP activity is an important component of the drug discovery and design process. Relative to the availability of a wide range of experimental atomic-resolution CYP structures, the development of structure-based CYP activity models has been limited. To better characterize the role of CYP conformational fluctuations in CYP activity, we perform multiple microsecond-scale all-atom explicit-solvent molecular dynamics (MD) simulations on three CYP isoforms, 1A2, 2D6, and 3A4, which together account for the majority of CYP-mediated drug metabolism. The MD simulations employ a variety of positional restraints, ranging from keeping all CYP atoms close to their experimentally determined coordinates to allowing full flexibility. We find that, with full flexibility, large fluctuations in the CYP binding sites correlate with efficient water exchange from these buried binding sites. This is especially true for 1A2, which, when restrained to its crystallographic conformation, is unable to exchange water between the binding site and bulk solvent. These findings imply that, in addition to crystal structures, a representative ensemble of conformational states ought to be included when developing structure-based CYP activity models.
人类细胞色素P450酶(CYPs)对于小分子药物(毒品)的代谢至关重要。因此,预测CYPs的药物代谢以及药物对CYP活性的抑制是药物发现和设计过程的重要组成部分。相对于广泛的实验原子分辨率CYP结构的可用性,基于结构的CYP活性模型的发展一直受到限制。为了更好地表征CYP构象波动在CYP活性中的作用,我们对三种CYP同工型1A2、2D6和3A4进行了多次微秒级全原子显式溶剂分子动力学(MD)模拟,这三种同工型共同构成了CYP介导的药物代谢的大部分。MD模拟采用了各种位置约束,从使所有CYP原子接近其实验确定的坐标到允许完全灵活性。我们发现,在完全灵活的情况下,CYP结合位点的大波动与这些埋藏结合位点的有效水交换相关。对于1A2尤其如此,当将其限制在其晶体结构构象时,它无法在结合位点和本体溶剂之间交换水。这些发现意味着,在开发基于结构的CYP活性模型时,除了晶体结构外,还应包括一个代表性的构象状态集合。