首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Electron microscopic evidence for nucleation and growth of 3D acetylcholine receptor microcrystals in structured lipid–detergent matrices
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Electron microscopic evidence for nucleation and growth of 3D acetylcholine receptor microcrystals in structured lipid–detergent matrices

机译:在结构化脂质洗涤剂基质中3D乙酰胆碱受体微晶成核和生长的电子显微镜证据

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摘要

Nicotinic acetylcholine receptors (AChRs) belong to a superfamily of oligomeric proteins that transduce electric signals across the cell membrane on binding of neurotransmitters. These receptors harbor a large extracellular ligand-binding domain directly linked to an ion-conducting channel-forming domain that spans the cell membrane 20 times and considerably extends into the cytoplasm. Thus far, none of these receptor channels has been crystallized in three dimensions. The crystallization of the AChR from Torpedo marmorata electric organs is challenged here in lipidic–detergent matrices. Detergent-soluble AChR complexed with α-bungarotoxin (αBTx), a polypeptidic competitive antagonist, was purified. The AChR–αBTx complex was reconstituted in a lipidic matrix composed of monoolein bilayers that are structured in three dimensions. The αBTx was conjugated to a photo-stable fluorophore, enabling us to monitor the physical behavior of the receptor–toxin complex in the lipidic matrix under light stereomicroscope, and to freeze fracture regions containing the receptor–toxin complex for visualization under a transmission electron microscope. Conditions were established for forming 2D receptor–toxin lattices that are stacked in the third dimension. 3D AChR nanocrystals were thereby grown inside the highly viscous lipidic 3D matrix. Slow emulsification of the lipidic matrix converted these nanocrystals into 3D elongated thin crystal plates of micrometer size. The latter are stable in detergent-containing aqueous solutions and can currently be used for seeding and epitaxial growth, en route to crystals of appropriate dimensions for x-ray diffraction studies.
机译:烟碱型乙酰胆碱受体(AChR)属于寡聚蛋白的超家族,可在与神经递质结合时跨细胞膜传导电信号。这些受体具有一个大的细胞外配体结合结构域,该结构域直接与离子传导通道形成结构域相连,该结构域跨越细胞膜20倍,并显着延伸到细胞质中。迄今为止,这些受体通道均未在三个维度上结晶。在脂质-去污剂基质中,从鱼雷电器官的AChR的结晶受到挑战。纯化与多肽竞争性拮抗剂α-邦加罗毒素(αBTx)配合的可溶于洗涤剂的AChR。 AChR–αBTx复合物在脂质基质中重构,该基质由单油精双层构成,该双层结构具有三维结构。 αBTx与光稳定的荧光团缀合,使我们能够在光学立体显微镜下监测脂质基质中受体-毒素复合物的物理行为,并冻结包含受体-毒素复合物的骨折区域,以便在透射电子显微镜下观察。建立了形成二维三维堆叠的受体毒素格的条件。 3D AChR纳米晶体由此在高粘性脂质3D基质中生长。脂质基质的缓慢乳化将这些纳米晶体转化为微米级的3D细长薄晶体板。后者在含洗涤剂的水溶液中是稳定的,目前可用于播种和外延生长,并用于X射线衍射研究的合适尺寸的晶体。

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