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钙激活氯离子通道 Bestrophin 的门控分子机制。

Molecular mechanisms of gating in the calcium-activated chloride channel bestrophin.

机构信息

Structural Biology Program, Memorial Sloan Kettering Cancer Center, New York, United States.

Louis V. Gerstner Jr. Graduate School of Biomedical Sciences, Memorial Sloan Kettering Cancer Center, New York, United States.

出版信息

Elife. 2019 Jan 10;8:e43231. doi: 10.7554/eLife.43231.

Abstract

Bestrophin (BEST1-4) ligand-gated chloride (Cl) channels are activated by calcium (Ca). Mutation of BEST1 causes retinal disease. Partly because bestrophin channels have no sequence or structural similarity to other ion channels, the molecular mechanisms underlying gating are unknown. Here, we present a series of cryo-electron microscopy structures of chicken BEST1, determined at 3.1 Å resolution or better, that represent the channel's principal gating states. Unlike other channels, opening of the pore is due to the repositioning of tethered pore-lining helices within a surrounding protein shell that dramatically widens a neck of the pore through a concertina of amino acid rearrangements. The neck serves as both the activation and the inactivation gate. Ca binding instigates opening of the neck through allosteric means whereas inactivation peptide binding induces closing. An aperture within the otherwise wide pore controls anion permeability. The studies define a new molecular paradigm for gating among ligand-gated ion channels.

摘要

Bestrophin (BEST1-4) 配体门控氯离子 (Cl) 通道被钙离子 (Ca) 激活。BEST1 的突变会导致视网膜疾病。部分原因是 bestrophin 通道与其他离子通道没有序列或结构上的相似性,因此门控的分子机制尚不清楚。在这里,我们展示了一系列鸡 BEST1 的冷冻电子显微镜结构,分辨率达到或优于 3.1Å,代表了通道的主要门控状态。与其他通道不同,孔的打开是由于连接孔的螺旋在周围蛋白质壳内的重新定位,这通过一系列氨基酸重排极大地拓宽了孔的颈部。颈部既是激活门也是失活门。通过变构方式,Ca 结合引发颈部打开,而失活肽结合诱导关闭。在其他情况下较宽的孔内有一个孔径,控制阴离子的通透性。这些研究为配体门控离子通道的门控定义了一个新的分子范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d890/6342527/ede8684dd6c2/elife-43231-fig1.jpg

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