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利用系统性双-D-氨基酸替换的新方法对蛙皮抗菌肽2在模型膜环境中的构象和功能进行研究。

Conformational and functional study of magainin 2 in model membrane environments using the new approach of systematic double-D-amino acid replacement.

作者信息

Wieprecht T, Dathe M, Schümann M, Krause E, Beyermann M, Bienert M

机构信息

Forschungsinstitut für Molekulare Pharmakologie, Berlin, Germany.

出版信息

Biochemistry. 1996 Aug 20;35(33):10844-53. doi: 10.1021/bi960362c.

Abstract

Systematic double-D-amino acid replacement of adjacent amino acids has been used to study the secondary structure of the amphiphilic, antibiotic peptide magainin 2 amide (M2a) by circular dichroism spectroscopy. Bound to liposomes, the secondary structure of the peptide is characterized by a weak alpha-helix in the N-terminus and a stable alpha-helix between residues 9 and 21. The lack of conformational differences in the peptide when bound to vesicles of varying negative charge density indicates marked independence of the structure from electrostatic forces. The similarity of the helicity profiles observed for double D-isomers bound to vesicles and in the presence of sodium dodecyl sulfate micelles (SDS) clearly shows that SDS can mimic magainin-lipid interactions. In contrast, in 1:1 trifluoroethanol/buffer (v/v), the peptide exhibits a weak alpha-helix extended from the N- to the C-terminus. Dye release experiments from vesicles of phosphatidylglycerol showed that double-D-amino acid substitution only in the region of the stable helix results in a reduction of the membrane-permeabilizing ability. On vesicles with a reduced amount of acidic phospholipids, double-D-amino acid substitution in any position leads to a drastic reduction of peptide-induced membrane permeabilization. Whereas the activity of M2a on phosphatidylglycerol was found to be mainly electrostatically determined, hydrophobic interactions play a decisive role in the interaction with vesicles of reduced negative charge density. Fluorescence investigations of tryptophan-containing analogs of high and low helicity showed that differences in the location of the chromophores of the membrane-bound peptides do not exist.

摘要

通过圆二色光谱法,已采用对相邻氨基酸进行系统性双-D-氨基酸替换的方法来研究两亲性抗生素肽蛙皮素2酰胺(M2a)的二级结构。当与脂质体结合时,该肽的二级结构特征为N端有一个弱α螺旋,9至21位残基之间有一个稳定的α螺旋。当该肽与不同负电荷密度的囊泡结合时,其构象没有差异,这表明该结构明显独立于静电力。观察到与囊泡结合的双D异构体以及在十二烷基硫酸钠胶束(SDS)存在下的螺旋度分布相似,这清楚地表明SDS可以模拟蛙皮素与脂质的相互作用。相比之下,在1:1的三氟乙醇/缓冲液(v/v)中,该肽呈现出从N端延伸至C端的弱α螺旋。来自磷脂酰甘油囊泡的染料释放实验表明,仅在稳定螺旋区域进行双D氨基酸替换会导致膜通透能力降低。在酸性磷脂含量减少的囊泡上,在任何位置进行双D氨基酸替换都会导致肽诱导的膜通透作用急剧降低。虽然发现M2a对磷脂酰甘油的活性主要由静电决定,但疏水相互作用在与负电荷密度降低的囊泡相互作用中起决定性作用。对高螺旋度和低螺旋度含色氨酸类似物的荧光研究表明膜结合肽发色团的位置不存在差异。

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