Swandulla D, Armstrong C M
Department of Physiology, University of Pennsylvania, School of Medicine, Philadelphia 19104.
Proc Natl Acad Sci U S A. 1989 Mar;86(5):1736-40. doi: 10.1073/pnas.86.5.1736.
Cadmium block of calcium channels was studied in chicken dorsal root ganglion cells by a whole-cell patch clamp that provides high time resolution. Barium ion was the current carrier, and the channel type studied had a high threshold of activation and fast deactivation (type FD). Block of these channels by 20 microM external Cd2+ is voltage dependent. Cd2+ ions can be cleared from blocked channels by stepping the membrane voltage (Vm) to a negative value. Clearing the channels is progressively faster and more complete as Vm is made more negative. Once cleared of Cd2+, the channels conduct transiently on reopening but reequilibrate with Cd2+ and become blocked within a few milliseconds. Cd2+ equilibrates much more slowly with closed channels, but at a holding potential of -80 mV virtually all channels are blocked at equilibrium. Cd2+ does not slow closing of the channels, as would be expected if it were necessary for Cd2+ to leave the channels before closing occurred. Instead, the data show unambiguously that the channel gate can close when the channel is Cd2+ occupied.
采用具有高时间分辨率的全细胞膜片钳技术,在鸡背根神经节细胞中研究了镉对钙通道的阻断作用。以钡离子作为电流载体,所研究的通道类型具有高激活阈值和快速失活特性(FD型)。20微摩尔的细胞外镉离子对这些通道的阻断作用具有电压依赖性。通过将膜电压(Vm)钳制到负值,可以使镉离子从被阻断的通道中清除。随着Vm变得更负,通道的清除过程逐渐加快且更彻底。一旦镉离子被清除,通道重新开放时会短暂导通,但随后会与镉离子重新达到平衡,并在几毫秒内再次被阻断。镉离子与关闭状态通道的平衡过程要慢得多,但在-80毫伏的钳制电位下,实际上所有通道在平衡时都会被阻断。镉离子不会减慢通道的关闭速度,而如果镉离子必须在通道关闭之前离开通道才会出现这种情况的话,那么情况应该是相反的。相反,数据明确显示,当通道被镉离子占据时,通道门可以关闭。