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利用构象搜索和双杂化密度泛函理论能量计算探索亮氨酸脑啡肽的构象偏好

Exploring Conformational Preferences of Leu-enkephalin Using the Conformational Search and Double-Hybrid DFT Energy Calculations.

作者信息

Park Hae Sook, Byun Byung Jin, Kang Young Kee

机构信息

Department of Nursing, Cheju Halla University, 38 Halladaehak-ro, Jeju, Jeju-do 63092, Republic of Korea.

Drug Discovery Center, JW Pharmaceutical Co. Ltd., 2477 Nambusunhwan-ro, Seocho-gu, Seoul 06725, Republic of Korea.

出版信息

ACS Omega. 2022 Jul 26;7(31):27755-27768. doi: 10.1021/acsomega.2c03942. eCollection 2022 Aug 9.

Abstract

The conformational preferences of Leu-enkephalin (Leu-Enk) were explored by the conformational search and density functional theory (DFT) calculations. By a combination of low-energy conformers of each residue, the initial structures of the neutral Leu-Enk were generated and optimized using the ECEPP3 force field in the gas phase. These structures were reoptimized at the HF/3-21G(d) and M06-2X levels of theory with 6-31G(d) and 6-31+G(d) basis functions. We finally located the 139 structures with the relative energy <10 kcal mol in the gas phase, from which the structures of the corresponding zwitterionic Leu-Enk were generated and reoptimized at the M06-2X/6-31+G(d) level of theory using the implicit solvation model based on density (SMD) in water. The conformational preferences of Leu-Enk were analyzed using Gibbs free energies corrected by single-point energies calculated at the double-hybrid DSD-PBEP86-D3BJ/def2-TZVP level of theory in the gas phase and in water. The neutral Leu-Enk dominantly adopted a folded structure in the gas phase stabilized by three H-bonds with a βII'-bend-like motif at the Gly3-Phe4 sequence and a close contact between the side chains of Phe4 and Leu5. The zwitterionic Leu-Enk exhibited a folded structure in water stabilized by three H-bonds with double β-bends such as a βII' bend at the Gly2-Gly3 sequence and a βI bend at the Gly3-Phe4 sequence. The calculated ensemble-averaged distance between C and C of the zwitterionic Leu-Enk in water is consistent with the value estimated from the simulated annealing using the distance constraints derived from nuclear Overhauser effect spectroscopy (NOESY) spectra in water. Interestingly, the preferred conformations of the neutral and zwitterionic Leu-Enk are new folded structures not predicted by earlier computational studies. According to the refined model of the zwitterionic Leu-Enk bound to δ-opioid receptor (δOR), there were favorable interactions of the terminal charged groups of Leu-Enk with the side chains of charged residues of δOR as well as a favorable C···H interaction of the Phe4 residue of Leu-Enk with Trp284 of δOR. Hence, these favorable interactions would induce the folded structure of the zwitterionic Leu-Enk with double β-bends isolated in water into the "bioactive conformation" like an extended structure when binding to δOR.

摘要

通过构象搜索和密度泛函理论(DFT)计算研究了亮氨酸脑啡肽(Leu-Enk)的构象偏好。通过组合每个残基的低能构象,使用气相中的ECEPP3力场生成并优化了中性Leu-Enk的初始结构。这些结构在理论水平HF/3-21G(d)和M06-2X下,分别使用6-31G(d)和6-31+G(d)基组进行了重新优化。我们最终在气相中定位了139个相对能量<10 kcal/mol的结构,从中生成了相应两性离子Leu-Enk的结构,并在理论水平M06-2X/6-31+G(d)下,使用基于密度的隐式溶剂化模型(SMD)在水中进行了重新优化。使用在气相和水中理论水平双杂化DSD-PBEP86-D3BJ/def2-TZVP下计算的单点能量校正的吉布斯自由能,分析了Leu-Enk的构象偏好。中性Leu-Enk在气相中主要采用折叠结构,由三个氢键稳定,在Gly3-Phe4序列处具有类似βII'-弯曲的基序,并且Phe4和Leu5的侧链之间有紧密接触。两性离子Leu-Enk在水中表现出折叠结构,由三个氢键稳定,具有双β-弯曲,如在Gly2-Gly3序列处的βII'弯曲和在Gly3-Phe4序列处的βI弯曲一样。计算得到的两性离子Leu-Enk在水中C 和C 之间的系综平均距离与使用水中核Overhauser效应光谱(NOESY)光谱导出的距离约束通过模拟退火估计的值一致。有趣的是,中性和两性离子Leu-Enk的优选构象是早期计算研究未预测到的新折叠结构。根据与δ-阿片受体(δOR)结合的两性离子Leu-Enk的精细模型,Leu-Enk的末端带电基团与δOR带电残基的侧链之间存在有利的相互作用,以及Leu-Enk的Phe4残基与δOR的Trp284之间存在有利的C···H相互作用。因此,这些有利的相互作用将诱导在水中孤立的具有双β-弯曲的两性离子Leu-Enk的折叠结构在与δOR结合时转变为类似伸展结构的“生物活性构象”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d249/9366962/29e90dea1637/ao2c03942_0002.jpg

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