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Shaker电压门控钾通道外前庭和选择性过滤器的结构模型。

Structural model of the outer vestibule and selectivity filter of the Shaker voltage-gated K+ channel.

作者信息

Durell S R, Guy H R

机构信息

Laboratory of Mathematical Biology, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892-5567, USA.

出版信息

Neuropharmacology. 1996;35(7):761-73. doi: 10.1016/0028-3908(96)00097-4.

Abstract

A new generation of structural models were developed of the outer vestibule and ion-selective portion of the voltage-gated Shaker K+ channel. Some features of these models are similar to those that we have developed previously [Durrel S. R. and Guy H. R. (1992) Biophys. J. 62, 238-250; Guy H. R. (1990) In Monovalent Cations in Biological Systems (Pasternak C. A., Ed.), pp. 31-58, CRC Press, Boca Raton, FL; Guy H. R. and Durell S. R. (1994) In Molecular Evolution of Physiological processes (Fambrough D., Ed.), pp. 197-212, The Rockefeller University Press, NY; Guy H. R. and Durell S. R. (1995) In Ion Channels and Genetic Diseases (Dawson D., Ed.), pp. 1-16, The Rockefeller University Press, NY] and other features were modified to make the models more consistent with recent experimental findings. The first part of the P segment is postulated, as always, to form a short alpha helix that spans only the outer portion of the membrane. The helix is tilted so that its C-terminal is nearer the pore than its N-terminal. The latter part of the P segment, P2, is postulated to have a relatively elongated conformation that is positioned approximately parallel to the axis of the pore. Four of the P2 segments assemble to form an ion-selective region that has two narrow regions; one formed by the Y445 side-chains at the outer entrance of the pore and one formed by the backbone of the T442 residues near the innermost part of the P segments. The S6 segment is postulated to form two alpha helices. The first S6 helix packs next to the P segments in our models. The NMR structures of two scorpion toxins, charybdotoxin and agitoxin 2, have been docked into the models of the outer vestibules. The shape of the outer vestibule has been modeled so that specific toxin-channel residue-residue interactions correspond to those that have been identified experimentally.

摘要

开发了新一代电压门控Shaker K+通道外前庭和离子选择性部分的结构模型。这些模型的一些特征与我们之前开发的模型相似[Durrel S. R.和Guy H. R.(1992年)《生物物理杂志》62卷,238 - 250页;Guy H. R.(1990年)《生物系统中的单价阳离子》(Pasternak C. A.编),第31 - 58页,CRC出版社,佛罗里达州博卡拉顿;Guy H. R.和Durell S. R.(1994年)《生理过程的分子进化》(Fambrough D.编),第197 - 212页,洛克菲勒大学出版社,纽约;Guy H. R.和Durell S. R.(1995年)《离子通道与遗传疾病》(Dawson D.编),第1 - 16页,洛克菲勒大学出版社,纽约],其他特征进行了修改,以使模型与最近的实验结果更一致。P段的第一部分如往常一样被假定形成一个仅跨越膜外部的短α螺旋。该螺旋倾斜,使得其C端比N端更靠近孔道。P段的后一部分,即P2,被假定具有相对伸长的构象,其位置大致平行于孔道轴。四个P2段组装形成一个具有两个狭窄区域的离子选择性区域;一个由孔道外入口处的Y445侧链形成,另一个由P段最内部附近的T442残基的主链形成。S6段被假定形成两个α螺旋。在我们的模型中,第一个S6螺旋紧邻P段堆积。两种蝎毒素,即美洲螯虾毒素和毒蝎毒素2的NMR结构已对接至外前庭模型中。外前庭的形状已被建模,以便特定的毒素 - 通道残基 - 残基相互作用与那些已通过实验确定的相互作用相对应。

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