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首页> 外文期刊>Journal of Neurophysiology >Differential expression of high- and two types of low-voltage-activated calcium currents in rod and cone bipolar cells of the rat retina.
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Differential expression of high- and two types of low-voltage-activated calcium currents in rod and cone bipolar cells of the rat retina.

机译:大鼠视网膜视杆和视锥双极细胞中高电压激活和两种类型的低压激活钙电流的差异表达。

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Whole cell voltage-clamp recordings were performed to investigate voltage-activated Ca(2+) currents in acutely isolated retinal bipolar cells of rats. Two groups of morphologically different bipolar cells were observed. Bipolar cells of the first group, which represent the majority of isolated bipolar cells, were immunoreactive to protein kinase C (PKC) and, therefore likely to be rod bipolar cells. Bipolar cells of the second group, which represent only a small population of isolated bipolar cells, did not show PKC immunoreactivity and were likely to be cone bipolar cells. The validity of morphological identification of bipolar cells was further confirmed by the presence of GABA(C) responses in these cells. Bipolar cells of both groups displayed low-voltage-activated (LVA) Ca(2+) currents with similar voltage dependence of activation and steady-state inactivation. However, the activation, inactivation, and deactivation kinetics of the LVA Ca(2+) currents between rod and cone bipolar cells differed. Particularly, the LVA Ca(2+) currents of rod bipolar cells displayed both transient and sustained components. In contrast, the LVA Ca(2+) currents of cone bipolar cells were mainly transient. In addition, the LVA Ca(2+) channels of rod bipolar cells were more permeable to Ba(2+) than to Ca(2+), whereas those of cone bipolar cells were equally or less permeable to Ba(2+) than to Ca(2+). The LVA Ca(2+) currents of both rod and cone bipolar cells were antagonized by high concentrations of nimodipine with IC(50) of 17 and 23 &mgr;M, respectively, but largely resistant to Cd(2+) and Ni(2+). Bipolar cells of both groups also displayed high-voltage-activated (HVA) Ca(2+) currents. The HVA Ca(2+) currents were, at least in part, to be L-type that were potentiated by BayK-8644 (1 microM) and largely antagonized by low concentrations of nimodipine (5 microM). The L-type Ca(2+) channels were almost exclusively located at the axon terminals of rod bipolar cells but expressed at least in the cell soma of cone bipolar cells. Results of this study indicate that rod and cone bipolar cells of the mammalian retina differentially express at least two types of LVA Ca(2+) channels. Rod and cone bipolar cells also show different spatial distribution of L-type Ca(2+) channels.
机译:全细胞电压钳记录进行了调查大鼠急性孤立的视网膜双极细胞中电压激活的Ca(2+)电流。观察到两组形态上不同的双极细胞。第一组的双极细胞代表了大多数分离的双极细胞,对蛋白激酶C(PKC)具有免疫反应性,因此可能是杆状双极细胞。第二组的双极细胞,仅代表少量分离的双极细胞,不显示PKC免疫反应性,可能是视锥双极细胞。这些细胞中GABA(C)反应的存在进一步证实了双极细胞形态学鉴定的有效性。两组的双极电池均显示低压激活(LVA)Ca(2+)电流,且激活和稳态灭活的电压依赖性相似。但是,在杆和锥双极细胞之间的LVA Ca(2+)电流的激活,失活和失活动力学是不同的。特别是,棒双极细胞的LVA Ca(2+)电流显示瞬时和持续的组件。相比之下,锥双极细胞的LVA Ca(2+)电流主要是瞬时的。此外,杆状双极细胞的LVA Ca(2+)通道对Ba(2+)的渗透性比对Ca(2+)的渗透性高,而锥形双极细胞的LVA Ca(2+)通道对Ba(2+)的渗透性相同或更低。到Ca(2+)。杆状和锥状双极细胞的LVA Ca(2+)电流均被高浓度尼莫地平所拮抗,IC(50)分别为17和23μM,但对Cd(2+)和Ni(2)具有很大的抵抗力+)。两组的双极型电池还显示高电压激活(HVA)Ca(2+)电流。 HVA Ca(2+)电流至少部分是被BayK-8644(1 microM)增强并被低浓度的尼莫地平(5 microM)拮抗的L型。 L型Ca(2+)通道几乎专门位于杆双极细胞的轴突末端,但至少在圆锥双极细胞的细胞体中表达。这项研究的结果表明,哺乳动物的视网膜的杆和锥双极细胞差异表达至少两种LVA Ca(2+)通道。杆和锥双极细胞也显示L型Ca(2+)通道的不同空间分布。

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