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二维动力学分析表明非洲爪蟾卵母细胞中机械敏感通道存在非顺序门控。

Two-dimensional kinetic analysis suggests nonsequential gating of mechanosensitive channels in Xenopus oocytes.

作者信息

Gil Z, Magleby K L, Silberberg S D

机构信息

Department of Life Sciences and the Zlotowski Center for Neuroscience, Ben-Gurion University of the Negev, Beer Sheva, 84105 Israel.

出版信息

Biophys J. 2001 Oct;81(4):2082-99. doi: 10.1016/S0006-3495(01)75857-2.

Abstract

Xenopus oocytes express mechanosensitive (MS(XO)) channels that can be studied in excised patches of membrane with the patch-clamp technique. This study examines the steady-state kinetic gating properties of MS(XO) channels using detailed single-channel analysis. The open and closed one-dimensional dwell-time distributions were described by the sums of 2-3 open and 5-7 closed exponential components, respectively, indicating that the channels enter at least 2-3 open and 5-7 closed kinetic states during gating. Dependency plots revealed that the durations of adjacent open and closed intervals were correlated, indicating two or more gateway states in the gating mechanism for MS channels. Maximum likelihood fitting of two-dimensional dwell-time distributions to both generic and specific models was used to examine gating mechanism and rank models. A kinetic scheme with five closed and five open states, in which each closed state could make a direct transition to an open state (two-tiered model) could account for the major features of the single-channel data. Two-tiered models that allowed direct transitions to subconductance open states in addition to the fully open state were also consistent with multiple gateway states. Thus, the gating mechanism of MS(XO) channels differs from the sequential (linear) gating mechanisms considered for MS channels in bacteria, chick skeletal muscle, and Necturus proximal tubule.

摘要

非洲爪蟾卵母细胞表达机械敏感(MS(XO))通道,可采用膜片钳技术在膜片上进行研究。本研究运用详细的单通道分析来检测MS(XO)通道的稳态动力学门控特性。开放和关闭的一维驻留时间分布分别由2 - 3个开放和5 - 7个关闭指数成分的总和来描述,这表明通道在门控过程中进入至少2 - 3个开放和5 - 7个关闭的动力学状态。相关性图显示相邻开放和关闭间隔的持续时间相关,表明MS通道门控机制中存在两个或更多的过渡状态。使用二维驻留时间分布对通用模型和特定模型进行最大似然拟合,以检验门控机制并对模型进行排序。一个具有五个关闭状态和五个开放状态的动力学方案,其中每个关闭状态可直接转变为开放状态(两层模型)能够解释单通道数据的主要特征。除了完全开放状态外,允许直接转变为亚电导开放状态的两层模型也与多个过渡状态一致。因此,MS(XO)通道的门控机制不同于细菌、鸡骨骼肌和美西螈近端小管中MS通道所考虑的顺序(线性)门控机制。

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