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计算洞察 CYP2A13 和 CYP2A6 对 NNK 的不同催化活性。

Computational insights into the different catalytic activities of CYP2A13 and CYP2A6 on NNK.

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China.

出版信息

J Mol Graph Model. 2011 Sep;30:1-9. doi: 10.1016/j.jmgm.2011.05.002. Epub 2011 May 27.

DOI:10.1016/j.jmgm.2011.05.002
PMID:21680215
Abstract

The human cytochrome P450 2A13 (CYP2A13) and P450 2A6 (CYP2A6) are 94% identical in amino acid sequence, but they metabolize many substrates with different efficiencies. Previous experimental results have shown that CYP2A13 exhibited catalytic activity that was more than 300-fold higher than CYP2A6 toward 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK), a carcinogen present in tobacco products. At present, however, the structural determinants accounting for the differential catalytic activities of these two isozymes toward NNK remain unclear. In the present study, molecular docking combined with molecular dynamics simulation and binding free energy calculation was performed to investigate the above issue. The results demonstrate that NNK was able to form a hydrogen bond with Asn297 in either CYP2A13 or CYP2A6. The hydrogen-bond acceptor was the pyridine nitrogen of NNK in the CYP2A13 complex, but it changed to the carbonyl oxygen in the CYP2A6 complex. NNK interacted with the residues in helix I and the K-β2 loop in CYP2A13, whereas it preferred to contact with the phenylalanine cluster in CYP2A6. The residues in helix I and the K-β2 loop of CYP2A13 played a vital role in keeping NNK in a more stable binding state. The binding free energies calculated by MM-GBSA were in agreement with the experimental results.

摘要

人细胞色素 P450 2A13(CYP2A13)和 P450 2A6(CYP2A6)在氨基酸序列上有 94%的同源性,但它们对许多底物的代谢效率却不同。先前的实验结果表明,CYP2A13 对 4-(甲基亚硝氨基)-1-(3-吡啶基)-1-丁酮(NNK)的催化活性比 CYP2A6 高 300 多倍,NNK 是烟草制品中的一种致癌物。然而,目前尚不清楚导致这两种同工酶对 NNK 催化活性差异的结构决定因素。在本研究中,进行了分子对接结合分子动力学模拟和结合自由能计算,以研究上述问题。结果表明,NNK 能够与 CYP2A13 或 CYP2A6 中的 Asn297 形成氢键。氢键的供体是 CYP2A13 复合物中 NNK 的吡啶氮,但在 CYP2A6 复合物中则变为羰基氧。NNK 与 CYP2A13 中的螺旋 I 和 K-β2 环上的残基相互作用,而在 CYP2A6 中则更喜欢与苯丙氨酸簇相互作用。CYP2A13 中的螺旋 I 和 K-β2 环上的残基在保持 NNK 更稳定的结合状态方面发挥了重要作用。通过 MM-GBSA 计算的结合自由能与实验结果一致。

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