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I 结构域中各区域对α1B钙通道阿片受体敏感性的影响。

Involvement of regions in domain I in the opioid receptor sensitivity of alpha1B Ca(2+) channels.

作者信息

Simen A A, Miller R J

机构信息

Department of Neurobiology, Pharmacology, and Physiology, and Committee on Neurobiology, The University of Chicago, IL 60637, USA.

出版信息

Mol Pharmacol. 2000 May;57(5):1064-74.

Abstract

The structural basis of Ca(2+) channel inhibition by G proteins has received considerable attention recently, and multiple regions on Ca(2+) channels that interact with G protein subunits have been identified. We have demonstrated previously that a region extending from the N terminus to the I/II loop of the Ca(2+) channel is involved in determining the differences between alpha1B and alpha1E Ca(2+) channels with respect to inhibition by G proteins. Here we explore this region of the channel in greater detail in an effort to further define the regions involved in determining inhibition. Chimeric Ca(2+) channels constructed from alpha1B and alpha1E Ca(2+) channels revealed that the N terminus, the I/II loop, and domain I all play an important role in determining inhibition. We identified a 70-amino acid fragment from domain I that mediates the effects of domain I, and a 50-amino acid fragment from the I/II loop that mediates the effects of the I/II loop. When these regions from alpha1B were exchanged into alpha1E, inhibition identical with that of alpha1B was observed. The differences between alpha1B and alpha1E in the identified region of domain I involve residues that are predicted to be almost exclusively extracellular. Mutations to some of the high-affinity G protein binding regions of alpha1B (alpha interaction domain, CC14, and a C-terminal Galpha binding site) caused relatively little change in inhibition, which suggests that these sites are not necessary individually for G protein-mediated inhibition and may help to explain the small effects of exchanging these regions in isolation.

摘要

G蛋白对Ca(2+)通道的抑制作用的结构基础近来受到了广泛关注,并且已经确定了Ca(2+)通道上与G蛋白亚基相互作用的多个区域。我们先前已经证明,从Ca(2+)通道的N端延伸至I/II环的区域,在决定α1B和α1E Ca(2+)通道在受G蛋白抑制方面的差异中发挥作用。在此,我们更详细地探究该通道区域,以进一步确定参与决定抑制作用的区域。由α1B和α1E Ca(2+)通道构建的嵌合Ca(2+)通道显示,N端、I/II环和结构域I在决定抑制作用中均发挥重要作用。我们从结构域I中鉴定出一个70个氨基酸的片段,它介导结构域I的作用,以及从I/II环中鉴定出一个50个氨基酸的片段,它介导I/II环的作用。当将α1B的这些区域替换到α1E中时,观察到与α1B相同的抑制作用。α1B和α1E在结构域I的已鉴定区域中的差异涉及预计几乎完全位于细胞外的残基。对α1B的一些高亲和力G蛋白结合区域(α相互作用结构域、CC14和一个C端Gα结合位点)进行突变,导致抑制作用变化相对较小,这表明这些位点对于G蛋白介导的抑制作用并非单独必需,并且可能有助于解释单独交换这些区域时产生的微小影响。

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