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甲硫氨酸脑啡肽与吗啡衍生物之间存在拓扑相似性的证据。

Evidence for topographical analogy between methionine-enkephalin and morphine derivatives.

作者信息

Schiller P W, Yam C F, Lis M

出版信息

Biochemistry. 1977 May 3;16(9):1831-8. doi: 10.1021/bi00628a011.

Abstract

Analogues of the endogenous opiate-receptor ligand [5-methionine]enkephalin (H-Tyr-Gly-Gly-Phe-Met-OH) were designed and synthesized for the purpose of testing the proposed similarity in spatial structure between this peptide and morphine derivatives. In the bioassay (inhibition of electrically induced contractions of the mouse vas deferens) [1-O-methyltyrosine,5-methionine]enkephalin, [1-N-methyltyrosine,5-methionine]enkephalin, [4-tryptophan,5-methionine]enkephalin, and [5-methionine sulfoxide]enkephalin possess, respectively, 0.4, 21, 27, and 67% activity of [5-methionine]enkephalin. These morphinomimetic activities correlate well with the opiate receptor affinities determined by displacement of [3H]naloxone in a guinea pig brain membrane preparation. The effects of O-methylation of the tyrosine residue and N-methylation of the terminal amino group on biological activity and receptor affinity support the hypothesis that the latter two moieties in the peptide correspond to the phenol group and the tertiary nitrogen, respectively, in morphine. Determination of the efficiency of energy transfer from tyrosine in position 1 to tryptophan in position 4 in [4-tryptophan,5-methionine]enkephalin from both tyrosine fluorescence quenching and relative enhancement of tryptophan fluorescence by means of a modified procedure permitted the calculation of an average intramolecular tyrosine-tryptophan separation of 10.0 +/- 1.1 A. Inspection of CPK models showed excellent agreement between this value and both the intrafluorophore distance in the 4 leads to 1 and 5 leads to 2 hydrogen bonded betaI-bend models of [4-tryptophan,5-methionine]enkephalin (9-11 A) and the phenol-phenyl separation in the potent morphine derivative 7alpha-(1(R)-hydroxy-1-methyl-3-phenylpropyl)-6,14-endo-ethenotetrahydrooripavine (8-10.5 A). The ensemble of these findings suggests an analogous topography for [5-methionine]enkephalin and morphine-oripavine derivatives.

摘要

设计并合成了内源性阿片受体配体[5-甲硫氨酸]脑啡肽(H-Tyr-Gly-Gly-Phe-Met-OH)的类似物,目的是检验该肽与吗啡衍生物在空间结构上的推测相似性。在生物测定(抑制小鼠输精管的电诱导收缩)中,[1-O-甲基酪氨酸,5-甲硫氨酸]脑啡肽、[1-N-甲基酪氨酸,5-甲硫氨酸]脑啡肽、[4-色氨酸,5-甲硫氨酸]脑啡肽和[5-甲硫氨酸亚砜]脑啡肽分别具有[5-甲硫氨酸]脑啡肽活性的0.4%、21%、27%和67%。这些拟吗啡活性与通过在豚鼠脑膜制剂中用[3H]纳洛酮置换所测定的阿片受体亲和力密切相关。酪氨酸残基的O-甲基化和末端氨基的N-甲基化对生物活性和受体亲和力的影响支持了这样的假设,即该肽中的后两个部分分别对应于吗啡中的酚基和叔氮。通过酪氨酸荧光猝灭以及采用改进方法对色氨酸荧光的相对增强来测定[4-色氨酸,5-甲硫氨酸]脑啡肽中1位酪氨酸到4位色氨酸的能量转移效率,从而计算出分子内酪氨酸-色氨酸的平均间距为10.0±1.1 Å。对CPK模型的检查表明,该值与[4-色氨酸,5-甲硫氨酸]脑啡肽的4→1和5→2氢键βI-弯曲模型中的荧光团内距离(9 - 11 Å)以及强效吗啡衍生物7α-(1(R)-羟基-1-甲基-3-苯基丙基)-6,14-内乙烯基四氢奥里派文(8 - 10.5 Å)中的酚-苯基间距均非常吻合。这些研究结果表明[5-甲硫氨酸]脑啡肽与吗啡-奥里派文衍生物具有类似的拓扑结构。

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