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通过圆二色性、荧光和核磁共振光谱对各向同性溶剂中选择性 13C 标记的合成蜂毒素及蜂毒素类似物进行表征。

Characterization of selectively 13C-labeled synthetic melittin and melittin analogues in isotropic solvents by circular dichroism, fluorescence, and NMR spectroscopy.

作者信息

Weaver A J, Kemple M D, Prendergast F G

机构信息

Department of Biochemistry and Molecular Biology, Mayo Foundation, Rochester, Minnesota 55905.

出版信息

Biochemistry. 1989 Oct 17;28(21):8614-23. doi: 10.1021/bi00447a052.

Abstract

The spectroscopic and functional characterization of 13C-labeled synthetic melittin and three analogues is described. Selectively 13C-enriched tryptophan ( [13C delta 1]-L-Trp) and glycine ( [13C alpha]Gly) were incorporated into melittin and three analogues by de novo peptide synthesis. 13C-Labeled tryptophan was incorporated into melittin at position 19 and into single-tryptophan analogues of melittin at positions 17, 11, and 9, respectively. Each of the synthetic peptides contained 13C-labeled glycine at position 12 only. The peptides were characterized functionally in a cytolytic assay, and spectroscopically by CD, fluorescence, and NMR. The behavior of 13C-labeled synthetic melittin was, in all respects, indistinguishable from that of the naturally occurring peptide. All of the analogues were found to be efficient lytic agents and thus were functionally similar to the native peptide, yet no evidence was found for formation of a melittin-like tetramer by any of the analogues in aqueous media, although there was a propensity for apparently nonspecific peptide aggregation, especially for MLT-W9. Since the analogues did exhibit fractional helicities by CD comparable to or even greater than melittin itself in the presence of methanol, we infer that tetramer assembly requires not only the ability to form alpha-helix but also a very precise packing of amino acid side chains of the constituent monomers. The 13C chemical shift of the Gly-12 C alpha was found to be a sensitive marker for helix formation in all of the peptides. For melittin itself, 13C NMR spectra revealed a downfield shift of approximately 1.8 ppm for the Gly-12 13C alpha resonance of the tetramer relative to that observed for the free monomer in D2O. In mixed samples containing melittin monomer and tetramer, two discrete Gly-12 13C alpha peaks were observed simultaneously, suggestive of slow exchange between the two species. We conclude that melittin's ability to form a soluble tetramer is not a prerequisite for cytolytic activity, nor is cytolytic potential precisely correlated with the ability to form an amphiphilic helix.

摘要

本文描述了13C标记的合成蜂毒素及其三种类似物的光谱和功能特性。通过从头肽合成法,将选择性富集13C的色氨酸([13C δ1]-L-Trp)和甘氨酸([13C α]Gly)掺入蜂毒素及其三种类似物中。13C标记的色氨酸分别掺入到蜂毒素的第19位以及蜂毒素单色氨酸类似物的第17、11和9位。每条合成肽仅在第12位含有13C标记的甘氨酸。通过细胞溶解试验对这些肽进行功能表征,并通过圆二色性(CD)、荧光和核磁共振(NMR)进行光谱表征。13C标记的合成蜂毒素在各方面的行为与天然存在的肽均无差异。所有类似物均被发现是有效的溶解剂,因此在功能上与天然肽相似,然而,尽管存在明显的非特异性肽聚集倾向,尤其是对于MLT-W9,但在水性介质中未发现任何类似物形成蜂毒素样四聚体的证据。由于在甲醇存在下,类似物通过CD显示出与蜂毒素本身相当甚至更高的部分螺旋度,我们推断四聚体组装不仅需要形成α-螺旋的能力,还需要组成单体氨基酸侧链的非常精确的堆积。发现Gly-12 Cα的13C化学位移是所有肽中螺旋形成的敏感标记。对于蜂毒素本身,13C NMR光谱显示,相对于在D2O中观察到的游离单体,四聚体的Gly-12 13Cα共振向低场位移约1.8 ppm。在含有蜂毒素单体和四聚体的混合样品中,同时观察到两个离散的Gly-12 13Cα峰,表明这两种物种之间存在缓慢交换。我们得出结论,蜂毒素形成可溶性四聚体的能力不是细胞溶解活性的先决条件,细胞溶解潜力也与形成两亲性螺旋的能力没有精确关联。

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