Kuga T, Kobayashi S, Hirakawa Y, Kanaide H, Takeshita A
Research Institute of Angiocardiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
Circ Res. 1996 Jul;79(1):14-9. doi: 10.1161/01.res.79.1.14.
The expression of L- and T-type Ca2+ channels has been reported to change during various biological events, including cellular differentiation and proliferation. The present study aimed to examine whether or not the expression of L- and T-type Ca2+ channels depends on the cell cycle in rat aortic smooth muscle cells in primary culture. Both the phase of the cell cycle and the functional expression of Ca2+ channels were determined in the same single cell, using an immunocytochemical analysis of cell cycle-specific nuclear antigens and a whole-cell voltage-clamp method, respectively. In the G0 (n = 130) and M (n = 75) phases, all cells showed only L-type Ca2+ currents. The cells showing a T-type Ca2+ current appeared in the G1 phase (37%, n = 85) and increased in the S phase (90%, n = 21). For L-type Ca2+ channels, the current density was significantly greater in the G1 phase than in the G0 and M phases. However, either the voltage-dependent properties or the dose-response relationships of Bay K 8644- and second messenger-induced modulations of L-type Ca2+ current did not differ in the four phases of the cell cycle. These findings thus indicate that the expression of L- and T-type Ca2+ channels depends on the cell cycle, whereas the characteristics of L-type Ca2+ channels do not differ between the phases of the cell cycle.
据报道,L型和T型Ca2+通道的表达在包括细胞分化和增殖在内的各种生物学过程中会发生变化。本研究旨在探讨原代培养的大鼠主动脉平滑肌细胞中L型和T型Ca2+通道的表达是否依赖于细胞周期。分别使用细胞周期特异性核抗原的免疫细胞化学分析和全细胞膜片钳方法,在同一个单细胞中确定细胞周期阶段和Ca2+通道的功能表达。在G0期(n = 130)和M期(n = 75),所有细胞仅表现出L型Ca2+电流。出现T型Ca2+电流的细胞出现在G1期(37%,n = 85),并在S期增加(90%,n = 21)。对于L型Ca2+通道,G1期的电流密度显著大于G0期和M期。然而,L型Ca2+电流的电压依赖性特性或Bay K 8644和第二信使诱导的调制的剂量反应关系在细胞周期的四个阶段没有差异。因此,这些发现表明L型和T型Ca2+通道的表达依赖于细胞周期,而L型Ca2+通道的特性在细胞周期各阶段之间没有差异。