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首页> 外文期刊>The Journal of Physiology >Voltage dependence of macroscopic and unitary currents of gap junction channels formed by mouse connexin50 expressed in rat neuroblastoma cells.
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Voltage dependence of macroscopic and unitary currents of gap junction channels formed by mouse connexin50 expressed in rat neuroblastoma cells.

机译:大鼠神经母细胞瘤细胞中表达的小鼠连接蛋白50形成的间隙连接通道的宏观和单位电流的电压依赖性。

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摘要

1. The macroscopic and single channel gating characteristics of connexin (Cx) 50 gap junction channels between pairs of N2A neuroblastoma cells transfected with mouse Cx50 DNA were investigated using the dual whole-cell voltage clamp technique. 2. The macroscopic junctional current (Ij) of Cx50-transfected cells decayed exponentially with time in response to transjunctional voltage (Vj) steps (time constant (tau) of approximately 4 s at a Vj of 30-40 mV and 100-200 ms at a Vj of 80-100 mV). The steady-state junctional conductance (gj) was well described by a two-state Boltzmann equation. The half-inactivation voltage (V0), the ratio of minimal to maximal gj (gmin/gmax) and the equivalent gating charge were +/- 37 mV, 0.21 and 4, respectively. 3. The conductance of single Cx50 channels measured using patch pipettes containing 130 mM CsCl was 220 +/- 13.1 pS (12 cell pairs). A prominent residual or subconductance state corresponding to 43 +/- 4. 2 pS (10 cell pairs) was also observed at large Vj s. 4. The relationship between channel open probability (Po) and Vj was well described by a Boltzmann relationship with parameters similar to those obtained for macroscopic gj (V0 = 34 mV, gating charge = 4.25, maximum P= 0.98). The ensemble average of single channel currents at Vj = 50 mV declined in a monoexponential manner (tau = 905 ms), a value similar to the decline of the macroscopic Ij of Cx50 channels at the same voltage. 5. Ion substitution experiments indicated that Cx50 channels have a lower permeability to anions than to cations (transjunctional conductance of KCl vs. potassium glutamate (gammaj, KCl/gammaj,KGlut), 1.2; 6 cell pairs). 6. The results have important implications for understanding the role of connexins in tissues where Cx50 is a major gap junction component, including the lens.
机译:1.使用双重全细胞电压钳技术研究了用小鼠Cx50 DNA转染的成对N2A神经母细胞瘤细胞对之间的连接蛋白(Cx)50间隙连接通道的宏观和单通道门控特性。 2.在30-40 mV和100-200 ms的Vj下,Cx50转染的细胞的宏观结电流(Ij)随时间呈指数衰减,响应于跨结电压(Vj)阶跃(时间常数(tau)约为4 s)。在Vj为80-100 mV时)。稳态结电导(gj)由两态Boltzmann方程很好地描述。半灭活电压(V0),最小与最大gj之比(gmin / gmax)和等效门控电荷分别为+/- 37 mV,0.21和4。 3.使用包含130 mM CsCl的贴片移液器测得的单个Cx50通道的电导为220 +/- 13.1 pS(12个细胞对)。在大Vs时也观察到明显的残余或亚电导状态,对应于43 +/-4。2 pS(10个细胞对)。 4.通过玻尔兹曼关系可以很好地描述通道开放概率(Po)与Vj之间的关系,其参数类似于从宏观gj获得的参数(V0 = 34 mV,门控电荷= 4.25,最大P = 0.98)。在Vj = 50 mV时,单通道电流的总体平均值以单指数方式下降(tau = 905 ms),该值类似于在相同电压下Cx50通道的宏观Ij的下降。 5.离子置换实验表明,Cx50通道对阴离子的渗透性比对阳离子的渗透性低(KCl与谷氨酸钾的跨结电导(γ,KCl /γ,KGlut),1.2; 6个细胞对)。 6.结果对于理解连接蛋白在其中Cx50是主要的间隙连接成分(包括晶状体)的组织中的作用具有重要意义。

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