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企鹅胃中β-防御素——企鹅防御素的溶液结构

Solution structure of spheniscin, a beta-defensin from the penguin stomach.

作者信息

Landon Céline, Thouzeau Cécile, Labbé Henri, Bulet Philippe, Vovelle Françoise

机构信息

Centre de Biophysique Moléculaire, CNRS UPR 4301, Université d'Orléans, rue Charles Sadron, 45071 Orléans 2, France.

出版信息

J Biol Chem. 2004 Jul 16;279(29):30433-9. doi: 10.1074/jbc.M401338200. Epub 2004 Apr 30.

Abstract

Recently two beta-defensins, named spheniscins, have been isolated from the stomach content of the king penguin (Aptenodytes patagonicus), which is capable of preserving food for several weeks during egg incubation (Thouzeau, C., Le Maho, Y., Froget, G., Sabatier, L., Le Bohec, C., Hoffmann, J. A., and Bulet, P. (2003) J. Biol. Chem. 278, 51053-51058). It has been proposed that, in combination with other antimicrobial peptides, spheniscins may be involved in this long term preservation of food in the bird's stomach. To draw some structure/function features, the three-dimensional structure in aqueous solution of the most abundant spheniscin (Sphe-2) was determined by two-dimensional NMR and molecular modeling techniques. The overall fold of Sphe-2 includes a three-stranded antiparallel beta-sheet stabilized by three disulfide bridges with a pairing typical of beta-defensins. In addition, the N-terminal segment shows helical features on most structures. Sphe-2 is highly cationic, and its surface displays a hydrophobic patch. Comparative modeling revealed that this patch is preserved in avian defensins. The activity of Sphe-2 against a pathogenic Gram-positive strain was retained in vitro in the conditions of osmolarity found in penguin stomach content and also in different salt concentrations and compositions up to those reported for seawater. Comparison with structurally related mammalian beta-defensins showed that the hydrophobic patch is not preserved in mammalian beta-defensins and that the high cationicity of Sphe-2 is presumably the critical factor for its retained activity in high salt concentrations. Such peculiarities, in addition to a broad activity spectrum, suggest that penguin defensins may represent interesting probes for the design of highly efficient antibiotics to fight off pathogens that develop in relatively salt-rich body fluids.

摘要

最近,从帝企鹅(Aptenodytes patagonicus)的胃内容物中分离出了两种名为蝶形抗菌肽的β-防御素,在孵卵期间,帝企鹅能够将食物保存数周(Thouzeau, C., Le Maho, Y., Froget, G., Sabatier, L., Le Bohec, C., Hoffmann, J. A., and Bulet, P. (2003) J. Biol. Chem. 278, 51053 - 51058)。有人提出,蝶形抗菌肽与其他抗菌肽结合,可能参与了鸟类胃中食物的长期保存。为了得出一些结构/功能特征,通过二维核磁共振和分子建模技术确定了最丰富的蝶形抗菌肽(Sphe - 2)在水溶液中的三维结构。Sphe - 2的整体折叠包括一个由三条链组成的反平行β-折叠,通过三条二硫键稳定,具有β-防御素典型的配对方式。此外,N端片段在大多数结构上呈现螺旋特征。Sphe - 2具有高度阳离子性,其表面有一个疏水区域。比较建模显示,该区域在鸟类防御素中得以保留。在企鹅胃内容物中发现的渗透压条件下,以及在不同盐浓度和成分(直至海水报道的浓度)的条件下体外实验中,Sphe - 2对致病性革兰氏阳性菌株仍保持活性。与结构相关的哺乳动物β-防御素比较表明,疏水区域在哺乳动物β-防御素中未保留,Sphe - 2的高阳离子性可能是其在高盐浓度下保持活性的关键因素。除了具有广泛的活性谱外,这些特性表明企鹅防御素可能是设计高效抗生素以对抗在相对富含盐分的体液中生长的病原体的有趣探针。

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