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在第4位含有β-萘丙氨酸的脑啡肽类似物。

Enkephalin analogues containing beta-naphthylalanine at the fourth position.

作者信息

Mierke D F, Said-Nejad O E, Schiller P W, Goodman M

机构信息

Department of Chemistry, University of California, San Diego, La Jolla 92093.

出版信息

Biopolymers. 1990 Jan;29(1):179-96. doi: 10.1002/bip.360290123.

Abstract

To examine the importance of the aromatic side chains of enkephalin on opiate activity, we report the synthesis and conformational analysis of a series of analogues related to enkephalin with beta-naphthylalanine in place of phenylalanine at the fourth position. Three linear analogues (Tyr-D-Ala-Gly-(L and D)-beta Nal(1)-Leu-NH2 and Tyr-D-Ala-Gly-beta Nal(2)-Leu-NH2) were initially synthesized to examine the effect of the substitution on biological activity. The increased activity of these peptides at the mu-opiate receptor, compared to native Leu-enkephalin, prompted us to examine the more conformational constrained analogues, Tyr-c[D-A2bu-Gly-(L and D)-beta Nal(1)-Leu], incorporating a alpha, gamma-diaminobutyric acid at the second position and cyclization to the carboxylic end of the leucine. These two cyclic analogues provide insight into the necessity for the L chirality of the aromatic residue at position 4. The Tyr-c[D-A2bu-Gly-L-beta Nal(1)-Leu] analogue is highly potent and displays a slight preference for the mu receptor. The conformational analysis indicates that despite the high flexibility of the tyrosine side chain, the aromatic rings of the tyrosine and naphthylalanine are relatively distant from each other. The presence of two intramolecular hydrogen bonds help maintain the conformation of the 14-membered backbone ring that keeps the side chains directed away from each other. These findings are in agreement with our model of an extended structure required for mu selectivity and a folded form with close aromatic ring placement for delta selectivity.

摘要

为研究脑啡肽芳香侧链对阿片活性的重要性,我们报道了一系列与脑啡肽相关类似物的合成及构象分析,这些类似物在第4位用β-萘丙氨酸取代了苯丙氨酸。最初合成了三种线性类似物(Tyr-D-Ala-Gly-(L和D)-βNal(1)-Leu-NH2和Tyr-D-Ala-Gly-βNal(2)-Leu-NH2)以研究该取代对生物活性的影响。与天然亮氨酸脑啡肽相比,这些肽在μ-阿片受体处活性增加,促使我们研究更具构象限制的类似物Tyr-c[D-A2bu-Gly-(L和D)-βNal(1)-Leu],其在第2位引入了α,γ-二氨基丁酸并环化至亮氨酸的羧基末端。这两种环化类似物有助于深入了解第4位芳香残基L-手性的必要性。Tyr-c[D-A2bu-Gly-L-βNal(1)-Leu]类似物具有高效性且对μ受体有轻微偏好。构象分析表明,尽管酪氨酸侧链具有高度灵活性,但酪氨酸和萘丙氨酸的芳香环彼此相对较远。两个分子内氢键的存在有助于维持14元主链环的构象,使侧链彼此远离。这些发现与我们的模型一致,即μ选择性需要伸展结构,而δ选择性需要芳香环紧密排列的折叠形式。

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