Antollini Silvia S, Xu Yechun, Jiang Hualiang, Barrantes Francisco J
Instituto de Investigaciones Bioquímicas de Bahía Blanca and UNESCO Chair of Biophysics & Molecular Neurobiology, Argentina.
Mol Membr Biol. 2005 Nov-Dec;22(6):471-83. doi: 10.1080/09687860500367915.
A combination of fluorescence spectroscopy and molecular dynamics (MD) is applied to assess the conformational dynamics of a peptide making up the outermost ring of the nicotinic acetylcholine receptor (AChR) transmembrane region and the effect of membrane thickness and cholesterol on the hydrophobic matching of this peptide. The fluorescence studies exploit the intrinsic fluorescence of the only tryptophan residue in a synthetic peptide corresponding to the fourth transmembrane domain of the AChR gamma subunit (gammaM4-Trp(6)) reconstituted in lipid bilayers of varying thickness, and combine this information with quenching studies using depth-sensitive phosphatidylcholine spin-labeled probes and acrylamide, polarization of fluorescence, and generalized polarization of Laurdan. A direct correlation was found between bilayer width and the depth of insertion of Trp(6). We further extend our recent MD study of the conformational dynamics of the AChR channel to focus on the crosstalk between M4 and the lipid-belt region. The isolated gammaM4 peptide is shown to possess considerable orientational flexibility while maintaining a linear alpha-helical structure, and to vary its tilt depending on bilayer width and cholesterol (Chol) content. MD studies also show that gammaM4 also establishes contacts with the other TM peptides on its inner face, stabilizing a shorter TM length that is still highly sensitive to the lipid environment. In the native membrane the topology of the M4 ring is likely to exhibit a similar behavior, dynamically modifying its tilt to match the hydrophobic thickness of the bilayer.
将荧光光谱法与分子动力学(MD)相结合,用于评估构成烟碱型乙酰胆碱受体(AChR)跨膜区域最外环的肽段的构象动力学,以及膜厚度和胆固醇对该肽段疏水匹配的影响。荧光研究利用了在不同厚度脂质双层中重构的、对应于AChRγ亚基第四跨膜结构域(γM4-Trp(6))的合成肽中唯一色氨酸残基的固有荧光,并将该信息与使用深度敏感的磷脂酰胆碱自旋标记探针和丙烯酰胺的猝灭研究、荧光偏振以及劳丹的广义偏振相结合。发现双层宽度与Trp(6)的插入深度之间存在直接相关性。我们进一步扩展了我们最近对AChR通道构象动力学的MD研究,以关注M4与脂质带区域之间的串扰。结果表明,分离出的γM4肽在保持线性α-螺旋结构的同时具有相当大的取向灵活性,并且其倾斜度会根据双层宽度和胆固醇(Chol)含量而变化。MD研究还表明,γM4在其内侧也与其他跨膜肽建立了接触,稳定了较短的跨膜长度,而该长度仍然对脂质环境高度敏感。在天然膜中,M4环的拓扑结构可能表现出类似的行为,动态改变其倾斜度以匹配双层的疏水厚度。