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环境条件调节了来自糙皮侧耳的疏水蛋白 Vmh2 在不同状态之间的转换。

Environmental conditions modulate the switch among different states of the hydrophobin Vmh2 from Pleurotus ostreatus.

机构信息

Department of Organic Chemistry and Biochemistry, University of Naples Federico II, Naples, Italy.

出版信息

Biomacromolecules. 2012 Mar 12;13(3):743-50. doi: 10.1021/bm201663f. Epub 2012 Feb 21.

Abstract

Fungal hydrophobins are amphipathic, highly surface-active, and self-assembling proteins. The class I hydrophobin Vmh2 from the basidiomycete fungus Pleurotus ostreatus seems to be the most hydrophobic hydrophobin characterized so far. Structural and functional properties of the protein as a function of the environmental conditions have been determined. At least three distinct phenomena can occur, being modulated by the environmental conditions: (1) when the pH increases or in the presence of Ca(2+) ions, an assembled state, β-sheet rich, is formed; (2) when the solvent polarity increases, the protein shows an increased tendency to reach hydrophobic/hydrophilic interfaces, with no detectable conformational change; and (3) when a reversible conformational change and reversible aggregation occur at high temperature. Modulation of the Vmh2 conformational/aggregation features by changing the environmental conditions can be very useful in view of the potential protein applications.

摘要

真菌疏水蛋白是一种两亲性、高表面活性和自组装的蛋白质。来自担子菌蘑菇 Pleurotus ostreatus 的 I 类疏水蛋白 Vmh2 似乎是迄今为止最疏水的疏水蛋白。已经确定了该蛋白质作为环境条件函数的结构和功能特性。至少有三种不同的现象可以发生,这些现象受到环境条件的调节:(1)当 pH 值增加或存在 Ca(2+)离子时,形成富含 β-折叠的组装状态;(2)当溶剂极性增加时,蛋白质表现出更倾向于到达疏水/亲水界面的趋势,没有可检测到的构象变化;(3)当在高温下发生可逆构象变化和可逆聚集时。通过改变环境条件来调节 Vmh2 的构象/聚集特性在考虑到潜在的蛋白质应用时非常有用。

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