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Dopamine modulates in a differential fashion T- and L-type calcium currents in bass retinal horizontal cells

机译:多巴胺以不同的方式调节低音视网膜水平细胞中的T型和L型钙电流

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摘要

White bass (Roccus chrysops) retinal horizontal cells possess two types of voltage-activated calcium currents which have recently been characterized with regard to their voltage dependence and pharmacology (Sullivan, J., and E. M. Lasater. 1992. Journal of General Physiology. 99:85-107). A low voltage-activated transient current was identified which resembles the T-type calcium current described in a number of other preparations, along with a sustained high threshold, long-lasting calcium current that resembles the L-type calcium current. Here we report on the modulation of horizontal cell calcium channels by dopamine. Under whole-cell voltage clamp conditions favoring the expression of both calcium currents, dopamine had opposing actions on the two types of voltage-sensitive calcium currents in the same cone- type horizontal cell. The L-type calcium current was significantly potentiated by dopamine while the T-type current was simultaneously reduced. Dopamine had no effect on calcium currents in rod-type horizontal cells. Both of dopamine's actions were mimicked with the D1 receptor agonist, SKF 38393, and blocked by application of the D1 specific antagonist, SCH 23390. Dopamine's actions on the two types of calcium currents in white bass horizontal cells are mimicked by the cell membrane-permeant cyclic AMP derivative, 8-(4-chlorophenylthio)- cyclic AMP, suggesting that dopamine's action is linked to a cAMP- mediated second messenger system. Furthermore, the inhibitor of cAMP- dependent protein kinase blocked both of dopamine's actions on the voltage-dependent calcium channels when introduced through the patch pipette. This indicates that protein phosphorylation is involved in modulating horizontal cell calcium channels by dopamine. Taken together, these results show that dopamine has differential effects on the voltage-dependent calcium currents in retinal horizontal cells. The modulation of these currents may play a role in shaping the response properties of horizontal cells.
机译:白鲈(Roccus chrysops)视网膜水平细胞具有两种类型的电压激活钙电流,最近已对其电压依赖性和药理学进行了表征(Sullivan,J.和EM Lasater。1992. General Physiology。99: 85-107)。确定了一个低电压激活的瞬态电流,该电流类似于许多其他制剂中描述的T型钙电流,以及一个持续的高阈值,长效钙电流,类似于L型钙电流。在这里我们报告了多巴胺对水平细胞钙通道的调节。在有利于两种钙电流表达的全细胞电压钳条件下,多巴胺对同一锥型水平细胞中的两种类型的电压敏感钙电流具有相反的作用。多巴胺可显着增强L型钙电流,而同时降低T型电流。多巴胺对杆状水平细胞中的钙电流没有影响。多巴胺的两种作用均被D1受体激动剂SKF 38393模仿,并被D1特异性拮抗剂SCH 23390阻断。多巴胺对白色低音水平细胞中两种钙电流的作用被细胞膜渗透性模仿。环AMP衍生物,即8-(4-氯苯硫基)-环AMP,表明多巴胺的作用与cAMP介导的第二信使系统有关。此外,当通过贴片移液器引入时,cAMP依赖性蛋白激酶抑制剂可阻断多巴胺对电压依赖性钙通道的两种作用。这表明蛋白磷酸化参与多巴胺调节水平细胞钙通道。综上所述,这些结果表明多巴胺对视网膜水平细胞中电压依赖性钙电流具有不同的影响。这些电流的调制可能会影响水平单元的响应特性。

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