Forti L, Tottene A, Moretti A, Pietrobon D
Department of Biomedical Sciences, University of Padova, Italy.
J Neurosci. 1994 Sep;14(9):5243-56. doi: 10.1523/JNEUROSCI.14-09-05243.1994.
With the aim of characterizing the functional and pharmacological properties of the different voltage-dependent Ca2+ channels expressed in a given type of CNS neuron, we obtained single Ca2+ channel recordings from rat cerebellar granule cells in primary culture. Our data show that three novel classes of voltage-dependent Ca2+ channels are coexpressed in cerebellar granule cells. They are pharmacologically distinct from dihydropyridine-sensitive L-type and omega-conotoxin-sensitive N-type channels, and their functional properties are different from those of P- and T-type channels. The three novel 21 pS G1-, 15 pS G2-, and 20 pS G3-type Ca2+ channels have similar inactivation properties. They show complete steady-state inactivation at -40 mV and their single-channel average currents have both sustained and decaying components. They differ in activation threshold (-40 mV for G2, -30 mV for G3, and -10 mV for G1, with 90 mM Ba2+ as charge carrier), mean open time (1.2 msec for G2, 1 msec for G3, 0.8 msec for G1), and single-channel currents (at 0 mV: 0.5 pA for G2, 0.8 pA for G3, and 1.4 pA for G1). Together with the previously characterized multiple L-type Ca2+ channels (Forti and Pietrobon, 1993), G1-, G2-, and G3-type channels constitute the large majority of Ca2+ channels of cerebellar granule cells in culture. The low activation threshold of G2-type channels and their inactivation properties suggest that they might be native counterparts of the recently expressed rat brain clone rbE-II (Soong et al., 1993).
为了表征特定类型中枢神经系统(CNS)神经元中表达的不同电压依赖性Ca2+通道的功能和药理学特性,我们对原代培养的大鼠小脑颗粒细胞进行了单Ca2+通道记录。我们的数据表明,三种新型电压依赖性Ca2+通道在小脑颗粒细胞中共表达。它们在药理学上不同于二氢吡啶敏感的L型通道和ω-芋螺毒素敏感的N型通道,其功能特性也不同于P型和T型通道。这三种新型的21 pS G1型、15 pS G2型和20 pS G3型Ca2+通道具有相似的失活特性。它们在-40 mV时表现出完全的稳态失活,其单通道平均电流具有持续和衰减成分。它们在激活阈值(以90 mM Ba2+作为载流子,G2为-40 mV,G3为-30 mV,G1为-10 mV)、平均开放时间(G2为1.2毫秒,G3为1毫秒,G1为0.8毫秒)和单通道电流(在0 mV时:G2为0.5 pA,G3为0.8 pA,G1为1.4 pA)方面存在差异。与先前表征的多种L型Ca2+通道(Forti和Pietrobon,1993)一起,G1型、G2型和G3型通道构成了培养的小脑颗粒细胞中Ca2+通道的绝大多数。G2型通道的低激活阈值及其失活特性表明,它们可能是最近表达的大鼠脑克隆rbE-II(Soong等人,1993)的天然对应物。