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大电导钙激活钾通道的动力学结构表明,门控包括通过中间或二级状态的转变。一种闪烁机制。

Kinetic structure of large-conductance Ca2+-activated K+ channels suggests that the gating includes transitions through intermediate or secondary states. A mechanism for flickers.

作者信息

Rothberg B S, Magleby K L

机构信息

Department of Physiology and Biophysics, University of Miami School of Medicine, Miami, Florida 33101-6430, USA.

出版信息

J Gen Physiol. 1998 Jun;111(6):751-80. doi: 10.1085/jgp.111.6.751.

Abstract

Mechanisms for the Ca2+-dependent gating of single large-conductance Ca2+-activated K+ channels from cultured rat skeletal muscle were developed using two-dimensional analysis of single-channel currents recorded with the patch clamp technique. To extract and display the essential kinetic information, the kinetic structure, from the single channel currents, adjacent open and closed intervals were binned as pairs and plotted as two-dimensional dwell-time distributions, and the excesses and deficits of the interval pairs over that expected for independent pairing were plotted as dependency plots. The basic features of the kinetic structure were generally the same among single large-conductance Ca2+-activated K+ channels, but channel-specific differences were readily apparent, suggesting heterogeneities in the gating. Simple gating schemes drawn from the Monod- Wyman-Changeux (MWC) model for allosteric proteins could approximate the basic features of the Ca2+ dependence of the kinetic structure. However, consistent differences between the observed and predicted dependency plots suggested that additional brief lifetime closed states not included in MWC-type models were involved in the gating. Adding these additional brief closed states to the MWC-type models, either beyond the activation pathway (secondary closed states) or within the activation pathway (intermediate closed states), improved the description of the Ca2+ dependence of the kinetic structure. Secondary closed states are consistent with the closing of secondary gates or channel block. Intermediate closed states are consistent with mechanisms in which the channel activates by passing through a series of intermediate conformations between the more stable open and closed states. It is the added secondary or intermediate closed states that give rise to the majority of the brief closings (flickers) in the gating.

摘要

利用膜片钳技术记录的单通道电流的二维分析方法,研究了培养的大鼠骨骼肌中单个大电导钙激活钾通道(BK通道)的钙依赖性门控机制。为了从单通道电流中提取并展示基本的动力学信息,即动力学结构,将相邻的开放和关闭间隔配对分组,并绘制为二维驻留时间分布,将间隔对相对于独立配对预期值的过剩和不足绘制为依赖性图。单个大电导钙激活钾通道的动力学结构基本特征通常相同,但通道特异性差异很明显,这表明门控存在异质性。从变构蛋白的莫诺 - 怀曼 - 尚热(MWC)模型得出的简单门控方案可以近似动力学结构的钙依赖性基本特征。然而,观察到的依赖性图与预测的依赖性图之间存在一致差异,这表明MWC型模型中未包含的额外短暂寿命关闭状态参与了门控。将这些额外的短暂关闭状态添加到MWC型模型中,无论是在激活途径之外(二级关闭状态)还是在激活途径之内(中间关闭状态),都改善了对动力学结构钙依赖性的描述。二级关闭状态与二级门关闭或通道阻断一致。中间关闭状态与通道通过在更稳定的开放和关闭状态之间的一系列中间构象激活的机制一致。正是添加的二级或中间关闭状态导致了门控中大部分短暂关闭(闪烁)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc7b/2217154/c04d881bf262/JGP7708.f1.jpg

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