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疏水蛋白,揭开真菌外衣。

Hydrophobins, the fungal coat unravelled.

作者信息

Wösten H A, de Vocht M L

机构信息

Groningen Biotechnology and Biomolecular Sciences Institute, Department of Microbiology, University of Groningen, The Netherlands.

出版信息

Biochim Biophys Acta. 2000 Sep 18;1469(2):79-86. doi: 10.1016/s0304-4157(00)00002-2.

Abstract

Hydrophobins are among the most surface active molecules and self-assemble at any hydrophilic-hydrophobic interface into an amphipathic film. These small secreted proteins of about 100 amino acids can be used to make hydrophilic surfaces hydrophobic and hydrophobic surfaces hydrophilic. Although differences in the biophysical properties of hydrophobins have not yet been related to differences in primary structure it has been established that the N-terminal part, at least partly, determines wettability of the hydrophilic side of the assemblage, while the eight conserved cysteine residues that form four disulphide bridges prevent self-assembly of the hydrophobin in the absence of a hydrophilic-hydrophobic interface. Three conformations of class I hydrophobins have been identified: the monomeric state, which is soluble in water, the alpha-helical state, which is the result of self-assembly at a hydrophobic solid, and the beta-sheet state, which is formed during self-assembly at the water-air interface. Experimental evidence strongly indicates that the alpha-helical state is an intermediate and that the beta-sheet state is the end form of assembly. The latter state has a typical ultrastructure of a mosaic of 10 nm wide rodlets, which have been shown to resemble the amyloid fibrils.

摘要

疏水蛋白是表面活性最强的分子之一,能在任何亲水 - 疏水界面自组装形成两亲性薄膜。这些由约100个氨基酸组成的小分泌蛋白可用于使亲水表面疏水,疏水表面亲水。尽管疏水蛋白的生物物理性质差异尚未与一级结构差异相关联,但已确定N端部分至少部分决定了组装体亲水侧的润湿性,而形成四个二硫键的八个保守半胱氨酸残基可防止疏水蛋白在没有亲水 - 疏水界面的情况下自组装。已鉴定出I类疏水蛋白的三种构象:可溶于水的单体状态、在疏水固体上自组装形成的α - 螺旋状态以及在水 - 空气界面自组装过程中形成的β - 折叠状态。实验证据有力地表明,α - 螺旋状态是中间体,β - 折叠状态是组装的最终形式。后一种状态具有典型的超微结构,由10纳米宽的小杆组成镶嵌图案,已证明其类似于淀粉样纤维。

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