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Ca2+激活钾离子(BK)通道中β亚基与α亚基功能偶联的结构决定因素。

Structural determinants for functional coupling between the beta and alpha subunits in the Ca2+-activated K+ (BK) channel.

作者信息

Orio Patricio, Torres Yolima, Rojas Patricio, Carvacho Ingrid, Garcia Maria L, Toro Ligia, Valverde Miguel A, Latorre Ramon

机构信息

Department of Biophysics, Centro de Estudios Científicos, Valdivia, Chile.

出版信息

J Gen Physiol. 2006 Feb;127(2):191-204. doi: 10.1085/jgp.200509370.

Abstract

High conductance, calcium- and voltage-activated potassium (BK, MaxiK) channels are widely expressed in mammals. In some tissues, the biophysical properties of BK channels are highly affected by coexpression of regulatory (beta) subunits. The most remarkable effects of beta1 and beta2 subunits are an increase of the calcium sensitivity and the slow down of channel kinetics. However, the detailed characteristics of channels formed by alpha and beta1 or beta2 are dissimilar, the most remarkable difference being a reduction of the voltage sensitivity in the presence of beta1 but not beta2. Here we reveal the molecular regions in these beta subunits that determine their differential functional coupling with the pore-forming alpha-subunit. We made chimeric constructs between beta1 and beta2 subunits, and BK channels formed by alpha and chimeric beta subunits were expressed in Xenopus laevis oocytes. The electrophysiological characteristics of the resulting channels were determined using the patch clamp technique. Chimeric exchange of the different regions of the beta1 and beta2 subunits demonstrates that the NH3 and COOH termini are the most relevant regions in defining the behavior of either subunit. This strongly suggests that the intracellular domains are crucial for the fine tuning of the effects of these beta subunits. Moreover, the intracellular domains of beta1 are responsible for the reduction of the BK channel voltage dependence. This agrees with previous studies that suggested the intracellular regions of the alpha-subunit to be the target of the modulation by the beta1-subunit.

摘要

高电导钙和电压激活钾通道(BK,大电导钙激活钾通道)在哺乳动物中广泛表达。在某些组织中,BK通道的生物物理特性受调节(β)亚基共表达的影响很大。β1和β2亚基最显著的作用是增加钙敏感性并减缓通道动力学。然而,由α亚基与β1或β2亚基形成的通道的详细特征并不相同,最显著的差异是在存在β1而非β2时电压敏感性降低。在此,我们揭示了这些β亚基中决定其与形成孔道的α亚基不同功能偶联的分子区域。我们构建了β1和β2亚基之间的嵌合构建体,并在非洲爪蟾卵母细胞中表达了由α亚基和嵌合β亚基形成的BK通道。使用膜片钳技术测定所得通道的电生理特征。β1和β2亚基不同区域的嵌合交换表明,NH3和COOH末端是定义任一亚基行为的最相关区域。这强烈表明细胞内结构域对于微调这些β亚基的作用至关重要。此外,β1的细胞内结构域负责降低BK通道的电压依赖性。这与先前的研究一致,即先前的研究表明α亚基的细胞内区域是β1亚基调节的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44e3/2151488/05bb75af9019/jgp1270191f01.jpg

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