Penkler L J, Van Rooyen P H, Wessels P L
Department of Chemistry, University of Pretoria, South Africa.
Int J Pept Protein Res. 1993 Mar;41(3):261-74. doi: 10.1111/j.1399-3011.1993.tb00334.x.
The conformational space of the potent mu-selective opioids [D-Ala2,MePhe4,Gly-ol5]enkephalin (DAGO) and [D-Ala2,MePhe4,Met(O)-ol5]enkephalin (FK 33-824) has been analyzed by 1H-NMR spectroscopy and theoretical calculations involving systematic conformational searching and energy minimizations. A cis-trans equilibrium of the Gly3-MePhe4 amide bond is induced by the N-methyl group, and the more energetically favoured trans isomer is proposed as the biologically relevant form. A compact interaction between the side chains of Tyr1 and D-Ala2 was demonstrated by NOE and ROE effects in both peptides in D2O and DMSO-d6, further supported by shielding of the D-Ala2 methyl protons in both solvents. Analysis of coupling constants, NOE and ROE data indicated significant restriction of the conformational freedom of the MePhe4 side-chain for both peptides in the two solvents. The NMR results and theoretical calculations point towards folded low energy conformations characterized by a beta II-type turn around Gly3-MePhe4. For the trans isomer, a Tyr1-MePhe4 phenyl ring separation between 8.5 and 12.5 A was accompanied by proximity between the D-Ala2 side chain and the C-terminal in low energy conformations. The results are in good agreement with available data on related active enkephalins. The conformational effects induced by simultaneous incorporation of D-Ala2 and MePhe4 in enkephalins is discussed in the light of the enhanced mu-opioid receptor selectivity and activity of these peptides.
强效μ-选择性阿片样物质[D-丙氨酸2,甲基苯丙氨酸4,甘醇5]脑啡肽(DAGO)和[D-丙氨酸2,甲基苯丙氨酸4,甲硫氨酸(O)-醇5]脑啡肽(FK 33-824)的构象空间已通过1H-NMR光谱以及涉及系统构象搜索和能量最小化的理论计算进行了分析。N-甲基诱导了甘氨酸3-甲基苯丙氨酸4酰胺键的顺反平衡,并且提出能量上更有利的反式异构体为生物学相关形式。在D2O和DMSO-d6中,两种肽的NOE和ROE效应都证明了酪氨酸1和D-丙氨酸2侧链之间存在紧密相互作用,两种溶剂中D-丙氨酸2甲基质子的屏蔽进一步支持了这一点。耦合常数、NOE和ROE数据的分析表明,在两种溶剂中,两种肽的甲基苯丙氨酸4侧链的构象自由度都受到了显著限制。NMR结果和理论计算表明,其折叠的低能构象的特征是围绕甘氨酸3-甲基苯丙氨酸4有一个βII型转角。对于反式异构体,在低能构象中,酪氨酸1-甲基苯丙氨酸4苯环间距在8.5至12.5埃之间,同时D-丙氨酸2侧链与C端接近。结果与相关活性脑啡肽现有数据高度吻合。根据这些肽增强的μ-阿片受体选择性和活性,讨论了脑啡肽中同时掺入D-丙氨酸2和甲基苯丙氨酸4所诱导的构象效应。