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15个氨基酸残基的天蚕素A-蜂毒素杂合体的D-对映体。

D-enantiomers of 15-residue cecropin A-melittin hybrids.

作者信息

Merrifield E L, Mitchell S A, Ubach J, Boman H G, Andreu D, Merrifield R B

机构信息

Rockefeller University, New York, USA.

出版信息

Int J Pept Protein Res. 1995 Sep-Oct;46(3-4):214-20. doi: 10.1111/j.1399-3011.1995.tb00592.x.

Abstract

The all-D enantiomers of six 15-residue hybrids of cecropin A and melittin were synthesized. They contained the seven N-terminal residues of cecropin A, followed by eight residues from the N-terminal region of melittin. They were pure and of the correct composition and structure. The peptides were compared with their all-L enantiomers. The L and D isomer pairs were each exact mirror images by circular dichroism at several concentrations of hexafluoroisopropanol, and at 12 or 20% were highly helical. The L analogs were rapidly hydrolyzed by trypsin but the D analogs were very resistant, making them suitable candidates for orally active drugs. These 15-mers did not form ion channels in normal lipid bilayers made in decane, but those bilayers made in squalene were thinner and the peptides did form ion-conducting channels. The D/L pairs of peptides were very active antibiotics against five representative Gram-negative and Gram-positive bacteria. In each case the D and L isomers were essentially equally active within experimental error. This is interpreted to mean that the peptides do not act by tight interactions with chiral receptors, enzymes or lipids. The action of these peptides against these organisms is best explained by self-aggregation and the formation of ion-conducting pores across bacterial membranes.

摘要

合成了天蚕素A和蜂毒素六种15个残基杂合体的全D对映体。它们包含天蚕素A的七个N端残基,接着是蜂毒素N端区域的八个残基。它们纯净且具有正确的组成和结构。将这些肽与其全L对映体进行了比较。在几种六氟异丙醇浓度下,通过圆二色性测定,L和D异构体对均为精确的镜像,且在12%或20%时高度螺旋。L类似物能被胰蛋白酶快速水解,但D类似物非常耐受,这使其成为口服活性药物的合适候选物。这些15聚体在癸烷中形成的正常脂质双层中不形成离子通道,但在角鲨烯中形成的脂质双层更薄,且这些肽确实形成了离子传导通道。肽的D/L对是针对五种代表性革兰氏阴性和革兰氏阳性细菌的非常有效的抗生素。在每种情况下,D和L异构体在实验误差范围内基本具有同等活性。这被解释为意味着这些肽不是通过与手性受体、酶或脂质的紧密相互作用起作用。这些肽对这些生物体的作用最好通过自我聚集以及在细菌膜上形成离子传导孔来解释。

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