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趋化性N-甲酰基三肽的活性类似物HCO-Met-δZ Leu-Phe-OMe的合成、构象及活性

Synthesis, conformation, and activity of HCO-Met-delta Z Leu-Phe-OMe, an active analogue of chemotactic N-formyltripeptides.

作者信息

Pagani Zecchini G, Paglialunga Paradisi M, Torrini I, Lucente G, Gavuzzo E, Mazza F, Pochetti G, Paci M, Sette M, Di Nola A

机构信息

Dipartimento di Studi Farmaceutici, Università La Sapienza, Roma, Italy.

出版信息

Biopolymers. 1993 Mar;33(3):437-51. doi: 10.1002/bip.360330310.

Abstract

In order to induce a beta-turn conformation into the chemotactic linear tripeptide N-formyl-L-methionyl-L-leucyl-L-phenylalanine (fMLP), the new analogue N-formyl-L-methionyl-delta Z leucyl-L-phenylalanine methyl ester [delta Z Leu]2fMLP-OMe (1) has been synthesized. The conformational and biochemical consequences of this chemical modification have been determined. Analogue 1 has been synthesized by using N-carboxy-(Z)-alpha,beta-didehydroleucine anhydride as key compound to introduce the unsaturated residue at the central position of the tripeptide 1. The x-ray analysis shows that 1 adopts in the crystal a type II beta-turn conformation in which the new residue occupies the (i + 2) position, and an intramolecular H bond is formed between the formylic oxygen and the Phe NH. 1H-nmr analysis based on nuclear Overhauser effect measurements suggests that the same folded conformation is preferred in CDCl3 solution; this finding is also supported by molecular dynamics simulation. The biological activity of 1 has been determined on human neutrophils (polymorphonuclear leukocytes) and compared to that shown by fMLP-OMe. Chemotactic activity, granule enzyme release, and superoxide anion production have been determined. Analogue 1 is practically inactive as chemoattractant, highly active in the superoxide generation, and similar to the parent in the lysozyme release. The conformational restriction imposed on the backbone by the presence of the unsaturated residue is discussed in relation with the observed bioselectivity.

摘要

为了使趋化性线性三肽N-甲酰基-L-甲硫氨酰-L-亮氨酰-L-苯丙氨酸(fMLP)形成β-转角构象,已合成了新的类似物N-甲酰基-L-甲硫氨酰-δZ亮氨酰-L-苯丙氨酸甲酯[δZ Leu]2fMLP-OMe(1)。已确定了这种化学修饰的构象和生化结果。通过使用N-羧基-(Z)-α,β-脱氢亮氨酸酐作为关键化合物在三肽1的中心位置引入不饱和残基来合成类似物1。X射线分析表明,1在晶体中采用II型β-转角构象,其中新残基占据(i + 2)位置,并且在甲酰基氧和苯丙氨酸NH之间形成分子内氢键。基于核Overhauser效应测量的1H-核磁共振分析表明,在CDCl3溶液中相同的折叠构象是优选的;这一发现也得到了分子动力学模拟的支持。已在人中性粒细胞(多形核白细胞)上测定了1的生物活性,并与fMLP-OMe所示的活性进行了比较。已测定了趋化活性、颗粒酶释放和超氧阴离子产生。类似物1作为趋化剂实际上无活性,在超氧产生方面高度活跃,并且在溶菌酶释放方面与母体相似。讨论了不饱和残基的存在对主链施加的构象限制与观察到的生物选择性之间的关系。

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