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用于溶解豌豆类囊体膜光合复合物的去污剂正十二烷基-D-麦芽糖苷的α和β异构体形式的比较。

Comparison of the α and β isomeric forms of the detergent n-dodecyl-D-maltoside for solubilizing photosynthetic complexes from pea thylakoid membranes.

作者信息

Pagliano Cristina, Barera Simone, Chimirri Fabiana, Saracco Guido, Barber James

机构信息

Department of Materials Science and Chemical Engineering - BioSolar Lab, Politecnico di Torino, Alessandria, Italy.

出版信息

Biochim Biophys Acta. 2012 Aug;1817(8):1506-15. doi: 10.1016/j.bbabio.2011.11.001. Epub 2011 Nov 4.

Abstract

Mild non-ionic detergents are indispensable in the isolation of intact integral membrane proteins and protein-complexes from biological membranes. Dodecylmaltoside (DM) belongs to this class of detergents being a glucoside-based surfactant with a bulky hydrophilic head group composed of two sugar rings and a non-charged alkyl glycoside chain. Two isomers of this molecule exist, differing only in the configuration of the alkyl chain around the anomeric center of the carbohydrate head group, axial in α-DM and equatorial in β-DM. In this paper, we have investigated the solubilizing properties of α-DM and β-DM on the isolation of photosynthetic complexes from pea thylakoids membranes maintaining their native architecture of stacked grana and stroma lamellae. Exposure of these stacked thylakoids to a single step treatment with increasing concentrations (5-100mM) of α-DM or β-DM resulted in a quick partial or complete solubilization of the membranes. Regardless of the isomeric form used: 1) at the lowest DM concentrations only a partial solubilization of thylakoids was achieved, giving rise to the release of mainly small protein complexes mixed with membrane fragments enriched in PSI from stroma lamellae; 2) at concentrations above 30mM a complete solubilization occurred with the further release of high molecular weight protein complexes identified as dimeric PSII, PSI-LHCI and PSII-LHCII supercomplexes. However, at concentrations of detergent which fully solubilized the thylakoids, the α and β isomeric forms of DM exerted a somewhat different solubilizing effect on the membranes: higher abundance of larger sized PSII-LHCII supercomplexes retaining a higher proportion of LHCII and lower amounts of PSI-LHCI intermediates were observed in α-DM treated membranes, reflecting the mildness of α-DM compared with its isomer. This article is part of a Special Issue entitled: Photosynthesis Research for Sustainability: from Natural to Artificial.

摘要

温和的非离子型去污剂在从生物膜中分离完整的整合膜蛋白和蛋白质复合物时是必不可少的。十二烷基麦芽糖苷(DM)属于这类去污剂,它是一种基于葡萄糖苷的表面活性剂,具有由两个糖环组成的庞大亲水头基和一个不带电荷的烷基糖苷链。该分子存在两种异构体,仅在碳水化合物头基异头中心周围烷基链的构型上有所不同,在α-DM中为轴向,在β-DM中为赤道向。在本文中,我们研究了α-DM和β-DM在从豌豆类囊体膜中分离光合复合物时的增溶特性,同时保持其堆叠的基粒和基质类囊体的天然结构。将这些堆叠的类囊体用浓度不断增加(5-100mM)的α-DM或β-DM进行单步处理,会导致膜快速部分或完全溶解。无论使用哪种异构体形式:1)在最低的DM浓度下,仅实现了类囊体的部分溶解,主要释放出与基质类囊体中富含PSI的膜片段混合的小蛋白质复合物;2)在浓度高于30mM时,发生了完全溶解,进一步释放出被鉴定为二聚体PSII、PSI-LHCI和PSII-LHCII超复合物的高分子量蛋白质复合物。然而,在使类囊体完全溶解的去污剂浓度下,DM的α和β异构体形式对膜的增溶作用略有不同:在α-DM处理的膜中观察到较大尺寸的PSII-LHCII超复合物丰度更高,保留了更高比例的LHCII,而PSI-LHCI中间体的量更低,这反映了α-DM与其异构体相比更为温和。本文是名为:可持续性光合作用研究:从自然到人工的特刊的一部分。

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