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烟碱型乙酰胆碱受体跨膜区的混合螺旋-β-折叠模型。

A mixed helix-beta-sheet model of the transmembrane region of the nicotinic acetylcholine receptor.

作者信息

Ortells M O, Lunt G G

机构信息

School of Biology and Biochemistry, University of Bath, UK.

出版信息

Protein Eng. 1996 Jan;9(1):51-9. doi: 10.1093/protein/9.1.51.

Abstract

We have modelled the transmembrane region of the alpha 7 nicotinic acetylcholine receptor as a mixed alpha-helical/beta-sheet structure. The model was mainly based on the crystal structure of a pore-forming toxin, heat-labile enterotoxin. This is a pentameric protein having a central pore or channel composed of five alpha-helices, one from each of the 5 B subunits that form this pentamer. The remainder of this structure is beta-sheet, loops and a short alpha-helix, not included in the model. The model uses this channel as a template to build the transmembrane region, from M1 to the middle of M3. The remainder of M3 and M4 were built de novo as alpha-helices. Great consideration was given to labelling data available for the transmembrane region. In general terms, the shape of the model agrees very well with that obtained independently by electron microscopic analysis and the secondary structure predicted by the model is in accord with that estimated independently by Fourier transform infrared spectroscopy. The M2 helical region of the model is only slightly kinked, contrary to what is inferred from electron microscopic analysis, but has the same overall shape and form. On the membrane face of the model, the presence of deep pockets may provide the structural basis for the distinction between annular and non-annular lipid binding sites. Also, the transmembrane region is clearly asymmetric in the direction perpendicular to the membrane, and this may have strong influence on the surrounding lipid composition of each leaflet of the cytoplasmic membrane.

摘要

我们将α7烟碱型乙酰胆碱受体的跨膜区域模拟为一种混合的α螺旋/β折叠结构。该模型主要基于一种成孔毒素——热不稳定肠毒素的晶体结构。这是一种五聚体蛋白,具有一个由五个α螺旋组成的中央孔道或通道,每个α螺旋来自形成该五聚体的5个B亚基中的一个。该结构的其余部分是β折叠、环和一个短α螺旋,模型中未包含这些部分。该模型以这个通道为模板构建从M1到M3中部的跨膜区域。M3和M4的其余部分则重新构建为α螺旋。构建模型时充分考虑了跨膜区域可用的标记数据。总体而言,该模型的形状与通过电子显微镜分析独立获得的形状非常吻合,并且模型预测的二级结构与通过傅里叶变换红外光谱独立估计的二级结构一致。模型的M2螺旋区域只是稍有扭结,这与电子显微镜分析推断的情况相反,但整体形状和形态相同。在模型的膜表面,深口袋的存在可能为区分环状和非环状脂质结合位点提供结构基础。此外,跨膜区域在垂直于膜的方向上明显不对称,这可能对细胞质膜各小叶的周围脂质组成有很大影响。

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