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通过混合量子力学/分子力学计算对磷酸二酯酶 10 与腺苷 3',5'-一磷酸和鸟苷 3',5'-一磷酸结合结构的特征化。

Characterization of the structures of phosphodiesterase 10 binding with adenosine 3',5'-monophosphate and guanosine 3',5'-monophosphate by hybrid quantum mechanical/molecular mechanical calculations.

机构信息

College of Chemistry and Chemical Engineering, Xinyang Normal University, Xinyang 464000, P. R. China.

出版信息

J Phys Chem B. 2010 May 27;114(20):7022-8. doi: 10.1021/jp911527y.

Abstract

Quantum mechanical/molecular mechanical (QM/MM) geometry optimizations of the X-ray crystal structures of PDE10-AMP (PDB code 2OUN ) and PDE10-GMP (PDB code 2OUQ ) complexes have been performed to characterize the state of the AMP and GMP products, respectively. Results show that only one phosphate oxygen atom (O1) is protonated for both AMP and GMP product complexes. In addition, QM/MM calculations have resolved the orientation of the amide group of Gln726 in PDE10-GMP which was in conflict with the assignment of the guanine group of GMP in the X-ray crystal structure. Calculations reveal that the amide oxygen and nitrogen atom of Gln726 are rotated 180 degrees, resulting in two strong hydrogen bonds formed between the amide group of Gln726 and the guanine group of GMP. Binding free energy calculations for both QM/MM-optimized structures confirm the new conformational assignment of Gln726 in PDE10-GMP. The calculated binding free energy of the rotated structure is approximately 22 kcal/mol lower than the X-ray crystal assignment. The lower energy is mainly derived from the formation of two hydrogen bonds between the amide group of Gln726 and the guanine group of GMP. This implies that the orientation of the amide oxygen and nitrogen atoms in PDE10-AMP is different from PDE10-GMP. Finally, our results help to understand why PDE10 can hydrolyze both cAMP and cGMP.

摘要

已对 PDE10-AMP(PDB 代码 2OUN)和 PDE10-GMP(PDB 代码 2OUQ)复合物的 X 射线晶体结构进行了量子力学/分子力学(QM/MM)几何优化,以分别表征 AMP 和 GMP 产物的状态。结果表明,对于 AMP 和 GMP 产物复合物,只有一个磷酸氧原子(O1)被质子化。此外,QM/MM 计算还解决了 PDE10-GMP 中 Gln726 的酰胺基团的取向问题,这与 X 射线晶体结构中 GMP 的鸟嘌呤基团的分配相矛盾。计算表明,Gln726 的酰胺氧原子和氮原子旋转了 180 度,导致 Gln726 的酰胺基团和 GMP 的鸟嘌呤基团之间形成了两个强氢键。对 QM/MM 优化结构的结合自由能计算证实了 Gln726 在 PDE10-GMP 中的新构象分配。旋转结构的计算结合自由能比 X 射线晶体分配低约 22 kcal/mol。较低的能量主要来自 Gln726 的酰胺基团和 GMP 的鸟嘌呤基团之间形成的两个氢键。这意味着 PDE10 中酰胺氧和氮原子的取向与 PDE10-GMP 不同。最后,我们的结果有助于理解为什么 PDE10 可以水解 both cAMP 和 cGMP。

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