Liu Jie, Noble Penelope J, Xiao Guosheng, Abdelrahman Mohamed, Dobrzynski Halina, Boyett Mark R, Lei Ming, Noble Denis
Department of Physiology, University Laboratory of Physiology, University of Oxford, Oxford OX1 3PT, UK.
Prog Biophys Mol Biol. 2008 Jan-Apr;96(1-3):294-304. doi: 10.1016/j.pbiomolbio.2007.07.009. Epub 2007 Aug 10.
Cardiac pacemaking in the sinoatrial (SA) node and atrioventricular (AV) node is generated by an interplay of many ionic currents, one of which is the funny pacemaker current (If). To understand the functional role of If in two different pacemakers, comparative studies of spontaneous activity and expression of the HCN channel in mouse SA node and AV node were performed. The intrinsic cycle length (CL) is 179+/-2.7 ms (n=5) in SA node and 258+/-18.7 ms (n=5) in AV node. Blocking of If current by 1 micromol/L ZD7288 increased the CL to 258+/-18.7 ms (n=5) and 447+/-92.4 ms (n=5) in SA node and AV node, respectively. However, the major HCN channel, HCN4 expressed at low level in the AV node compared to the SA node. To clarify the discrepancy between the functional importance of If and expression level of HCN4 channel, a SA node cell model was used. Increasing the If conductance resulted in decreasing in the CL in the model, which explains the high pacemaking rate and high expression of HCN channel in the SA node. Resistance to the blocking of If in the SA node might result from compensating effects from other currents (especially voltage sensitive currents) involved in pacemaking. The computer simulation shows that the difference in the intrinsic CL could explain the difference in response to If blocking in these two cardiac nodes.
窦房结和房室结的心脏起搏是由多种离子电流相互作用产生的,其中之一是超极化激活的阳离子电流(If)。为了解If在两种不同起搏点中的功能作用,对小鼠窦房结和房室结的自发活动以及HCN通道的表达进行了比较研究。窦房结的固有周期长度(CL)为179±2.7毫秒(n = 5),房室结为258±18.7毫秒(n = 5)。用1微摩尔/升ZD7288阻断If电流后,窦房结和房室结的CL分别增加到258±18.7毫秒(n = 5)和447±92.4毫秒(n = 5)。然而,与窦房结相比,主要的HCN通道HCN4在房室结中的表达水平较低。为了阐明If的功能重要性与HCN4通道表达水平之间的差异,使用了窦房结细胞模型。增加If电导导致模型中的CL降低,这解释了窦房结中较高的起搏速率和HCN通道的高表达。窦房结对If阻断的抗性可能源于起搏过程中其他电流(特别是电压敏感电流)的补偿作用。计算机模拟表明,固有CL的差异可以解释这两个心脏节点对If阻断反应的差异。