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Stochastic 16-State Model of Voltage Gating of Gap-Junction Channels Enclosing Fast and Slow Gates

机译:围绕快慢栅极的间隙连接通道的电压门控随机16状态模型

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摘要

Gap-junction (GJ) channels formed of connexin (Cx) proteins provide a direct pathway for electrical and metabolic cell-cell interaction. Each hemichannel in the GJ channel contains fast and slow gates that are sensitive to transjunctional voltage (Vj). We developed a stochastic 16-state model (S16SM) that details the operation of two fast and two slow gates in series to describe the gating properties of homotypic and heterotypic GJ channels. The operation of each gate depends on the fraction of Vj that falls across the gate (VG), which varies depending on the states of three other gates in series, as well as on parameters of the fast and slow gates characterizing 1), the steepness of each gate's open probability on VG; 2), the voltage at which the open probability of each gate equals 0.5; 3), the gating polarity; and 4), the unitary conductances of the gates and their rectification depending on VG. S16SM allows for the simulation of junctional current dynamics and the dependence of steady-state junctional conductance (gj,ss) on Vj. We combined global coordinate optimization algorithms with S16SM to evaluate the gating parameters of fast and slow gates from experimentally measured gj,ss-Vj dependencies in cells expressing different Cx isoforms and forming homotypic and/or heterotypic GJ channels.
机译:连接蛋白(Cx)蛋白形成的间隙连接(GJ)通道为电和代谢细胞间相互作用提供了直接途径。 GJ通道中的每个半通道都包含对跨结电压(Vj)敏感的快速和慢速栅极。我们开发了一个随机16状态模型(S16SM),详细描述了串联的两个快速和两个慢速门的操作,以描述同型和异型GJ通道的门控特性。每个门的操作取决于落在整个门(VG)上的Vj的分数,该分数取决于串联的其他三个门的状态以及表征1),陡峭度的快速和慢速门的参数而变化每个闸门对VG的打开概率是多少; 2),每个门的打开概率等于0.5的电压; 3),门极极性;和4),门的单一电导及其整流取决于VG。 S16SM允许仿真结电流动力学以及稳态结电导(gj,ss)对Vj的依赖性。我们将全局坐标优化算法与S16SM组合在一起,以从表达不同Cx同工型并形成同型和/或异型GJ通道的细胞中,通过实验测量的gj,ss-Vj依赖关系评估快速门和慢速门的门控参数。

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