Lal R, Arnsdorf M F
Section of Cardiology, University of Chicago, Ill.
Circ Res. 1992 Sep;71(3):737-43. doi: 10.1161/01.res.71.3.737.
In the heart, the rapid propagation and synchronization of action potentials necessary for a normal heart rhythm and an effective cardiac output are mediated by specialized ionic channels that link adjacent cells and are known collectively as gap junctions. Cardiac gap junctions are gated by various physiological and pharmacological agents, but the role of voltage in their gating is unclear. Whereas embryonic or neonatal ventricular cells have voltage-gated gap junctions, adult cells are reported to have only voltage-independent gap junctions. We studied the voltage dependence of adult rat atrial gap junctions by individually voltage clamping each cell of a connected cell pair and controlling the transjunctional voltage (Vj), measuring transjunctional current (Ij), and calculating junctional conductance (gj). Two distinct populations of cell pairs were observed: highly coupled pairs with the peak gjs ranging from 3.4 to 40 nS and weakly coupled pairs with the peak gjs ranging from 0.3 to 2.0 nS. gj was dependent on Vj, and Ij decayed exponentially, with the time constants being voltage dependent. Voltage dependence was most apparent when cells were poorly coupled. The gj did not decrease to zero. The normalized conductance--Vj plot was fit with a two-state Boltzmann model as a first approximation, resulting in a half-inactivation potential and gating charge of 42.5 mV and 1.14 eV, respectively, for the weakly coupled cell pairs. For highly coupled cell pairs, the half-inactivation potential shifted to 53.3 mV. Single gap junctional channels had a gj of 36.2 +/- 7.6 pS (range, 27-49 pS), which was Vj independent.(ABSTRACT TRUNCATED AT 250 WORDS)
在心脏中,正常心律和有效心输出量所必需的动作电位的快速传播和同步是由连接相邻细胞的特殊离子通道介导的,这些通道统称为缝隙连接。心脏缝隙连接受多种生理和药理因素控制,但其门控中电压的作用尚不清楚。胚胎或新生心室细胞具有电压门控缝隙连接,而据报道成年细胞仅具有电压非依赖性缝隙连接。我们通过对连接细胞对中的每个细胞进行单独电压钳制、控制跨连接电压(Vj)、测量跨连接电流(Ij)并计算连接电导(gj),研究了成年大鼠心房缝隙连接的电压依赖性。观察到两种不同的细胞对群体:高耦合对,其峰值gj范围为3.4至40 nS;弱耦合对,其峰值gj范围为0.3至2.0 nS。gj依赖于Vj,Ij呈指数衰减,时间常数与电压有关。当细胞耦合较差时,电压依赖性最为明显。gj并未降至零。归一化电导-Vj图以两态玻尔兹曼模型作为一阶近似进行拟合,对于弱耦合细胞对,半失活电位和门控电荷分别为42.5 mV和1.14 eV。对于高耦合细胞对,半失活电位移至53.3 mV。单个缝隙连接通道的gj为36.2±7.6 pS(范围为27-49 pS),与Vj无关。(摘要截断于250字)