Instituto de Investigaciones Bioquímicas de Bahía Blanca, Consejo Nacional de Investigaciones Científicas y Técnicas, and UNESCO Chair of Biophysics and Molecular Neurobiology, Universidad Nacional del Sur, Buenos Aires, Argentina.
J Lipid Res. 2010 Sep;51(9):2629-41. doi: 10.1194/jlr.M005132.
The nicotinic acetylcholine receptor (AChR) is in intimate contact with the lipids in its native membrane. Here we analyze the possibility that it is the intrinsic properties of the AChR that determine its partition into a given lipid domain. Torpedo AChR or a synthetic peptide corresponding to the AChR M4 segment (the one in closer contact with lipids) was reconstituted into "raft"-containing model membranes. The distribution of the AChR was assessed by Triton X-100 extraction in combination with fluorescence studies, and lipid analyses were performed on each sample. The influence of rapsyn, a peripheral protein involved in AChR aggregation, was studied. Raft-like domain aggregation was also studied using membranes containing the ganglioside GM1 followed by GM1 crosslinking. The gammaM4 peptide displays a marked preference for raft-like domains. In contrast, AChR alone or in the presence of rapsyn or ganglioside aggregation exhibits no such preference for raft-like domains, but it does cause a significant reduction in the total amount of these domains. The results indicate that the distribution of the AChR in lipid domains cannot be due exclusively to the intrinsic physicochemical properties of the protein and that there must be an external signal in native cell membranes that directs the AChR to a specific membrane domain.
烟碱型乙酰胆碱受体(AChR)与天然膜中的脂质密切接触。在这里,我们分析了这样一种可能性,即 AChR 的固有特性决定了它在特定脂质域中的分配。将河豚 AChR 或对应于 AChR M4 片段的合成肽(与脂质更接近的片段)重新组装到含有“筏”的模型膜中。通过 Triton X-100 提取并结合荧光研究来评估 AChR 的分布,并对每个样品进行脂质分析。研究了参与 AChR 聚集的外周蛋白rapsyn 的影响。还使用含有神经节苷脂 GM1 随后进行 GM1 交联的膜研究了筏样域聚集。γM4 肽对筏样域表现出明显的偏好。相比之下,AChR 本身或在存在 rapsyn 或神经节苷脂聚集的情况下,对筏样域没有这种偏好,但它确实导致这些域的总量显著减少。结果表明,AChR 在脂质域中的分布不能仅仅归因于蛋白质的固有物理化学性质,在天然细胞膜中必须存在一个外部信号,该信号将 AChR 引导至特定的膜域。