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用于确定膜蛋白结构和插入情况的海藻糖保护脂质膜

Trehalose-protected lipid membranes for determining membrane protein structure and insertion.

作者信息

Tang Ming, Waring Alan J, Hong Mei

机构信息

Department of Chemistry, Iowa State University, Ames, IA 50011, USA.

出版信息

J Magn Reson. 2007 Feb;184(2):222-7. doi: 10.1016/j.jmr.2006.10.006. Epub 2006 Nov 2.

Abstract

Trehalose preserves lipid bilayers during dehydration and rehydration by replacing water to form hydrogen bonds between its own OH groups and lipid headgroups. We compare the lipid conformation and dynamics between trehalose-protected lyophilized membranes and hydrated membranes, to assess the suitability of the trehalose-containing membrane as a matrix for membrane protein structure determination. (31)P spectra indicate that the lipid headgroup of trehalose-protected dry POPC membrane (TRE-POPC) have an effective phase transition temperature that is approximately 50K higher than that of the hydrated POPC membrane. In contrast, the acyl chains have similar transition temperatures in the two membranes. Intramolecular lipid (13)C'-(31)P distances are the same in TRE-POPC and crystalline POPC, indicating that the lipid headgroup and glycerol backbone conformation is unaffected by trehalose incorporation. Intermolecular (13)C-(31)P distances between a membrane peptide and the lipid headgroups are 10% longer in the hydrated membrane at 226 K than in the trehalose-protected dry membrane at 253 K. This is attributed to residual motions in the hydrated membrane, manifested by the reduced (31)P chemical shift anisotropy, even at the low temperature of 226 K. Thus, trehalose lyoprotection facilitates the study of membrane protein structure by allowing experiments to be conducted at higher temperatures than possible with the hydrated membranes.

摘要

海藻糖在脱水和复水过程中通过取代水分子,在自身的羟基与脂质头部基团之间形成氢键来保护脂质双层。我们比较了海藻糖保护的冻干膜和水合膜之间的脂质构象和动力学,以评估含海藻糖的膜作为膜蛋白结构测定基质的适用性。(31)P谱表明,海藻糖保护的干燥POPC膜(TRE-POPC)的脂质头部基团具有比水合POPC膜高约50K的有效相变温度。相比之下,两种膜中的酰基链具有相似的转变温度。TRE-POPC和结晶POPC中的分子内脂质(13)C'-(31)P距离相同,表明脂质头部基团和甘油主链构象不受海藻糖掺入的影响。在226K时,水合膜中膜肽与脂质头部基团之间的分子间(13)C-(31)P距离比253K时海藻糖保护的干燥膜中的长10%。这归因于水合膜中的残余运动,即使在226K的低温下,(31)P化学位移各向异性的降低也表明了这一点。因此,海藻糖冻干保护通过允许在比水合膜更高的温度下进行实验,促进了膜蛋白结构的研究。

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