首页> 美国卫生研究院文献>The Journal of Physiology >Novel suppression of an L-type calcium channel in neurones of murine dorsal root ganglia by 23-butanedione monoxime.
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Novel suppression of an L-type calcium channel in neurones of murine dorsal root ganglia by 23-butanedione monoxime.

机译:23-丁二酮一肟对小鼠背根神经节神经元中L型钙通道的新型抑制作用。

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摘要

1. Voltage-activated currents through calcium channels in primary cultures of murine dorsal root ganglion cells (DRG) were studied with the whole-cell and cell-attached patch recording techniques. 2. The chemical phosphatase 2,3-butanedione monoxime (BDM) reversibly reduced the amplitude of L-type calcium current (ICa) in a dose-dependent manner; at a concentration of 20 mM, BDM caused a 47% suppression of ICa. 3. Application of 10 mM-8-bromo-cyclic AMP or 50 microM-isoprenaline onto DRG treated with BDM completely restored ICa to the pre-BDM level. 4. In striking contrast, bath application of Bay K 8644 (0.5-5 microM) had no effect on the BDM-suppressed ICa. As expected, Bay K 8644 alone caused a two- to threefold increase of the maximal ICa and shifted its I-V relationship to the left. Interestingly, if a cell was first exposed to Bay K 8644 further treatment with 20 mM-BDM resulted in 100% suppression of ICa. This suggests that Bay K 8644 changes the conformation of the calcium channel to one which is more sensitive or more accessible to the action of the phosphatase. 5. Pre-treatment of DRG with an activator of protein kinase C, 12-O-tetradecanoyl-phorbol-13-acetate, did not antagonize BDM's effect on ICa. 6. The depressant action of BDM on ICa was distinct from that of nifedipine in that it did not exhibit use dependence. 7. When single calcium channel currents were recorded in cell-attached patches (barium as the charge carrier), bath application of BDM reduced the percentage of time that the channel spent in the open state. 8. Superfusion with 8-bromo-cyclic AMP restored the ensemble macroscopic 'ICa' to the pre-BDM amplitude. This was due to a dramatic enhancement of the frequency of channel openings. 9. We suggest that BDM acts through the cytoplasm to alter cyclic AMP-dependent protein kinase modulation of neuronal L-type calcium channels. The brief, high-frequency openings which 8-bromo-cyclic AMP activates in the presence of BDM may reflect a rapid phosphorylation-dephosphorylation sequence which controls channel gating.
机译:1.利用全细胞和细胞贴片记录技术研究了鼠背根神经节细胞(DRG)原代培养物中钙通道的电压激活电流。 2.化学磷酸酶2,3-丁二酮一肟(BDM)以剂量依赖的方式可逆地降低了L型钙电流(ICa)的幅度;在浓度为20 mM时,BDM抑制了47%的ICa。 3.在用BDM处理的DRG上施用10 mM-8-溴环AMP或50 microM-异丙肾上腺素可将ICa完全恢复到BDM之前的水平。 4.形成鲜明对比的是,Bay K 8644(0.5-5 microM)的浴涂对BDM抑制的ICa没有影响。不出所料,仅Bay K 8644引起最大ICa的2到3倍增加,并且其I-V关系向左移动。有趣的是,如果首先将细胞暴露于Bay K 8644,则用20 mM-BDM进行进一步处理会导致100%抑制ICa。这表明Bay K 8644将钙通道的构型改变为对磷酸酶的作用更敏感或更易接近的通道。 5.用蛋白激酶C的活化剂12-O-十四烷酰基-phorbol-13-乙酸酯预处理DRG不会拮抗BDM对ICa的作用。 6. BDM对ICa的抑制作用与硝苯地平不同,因为它不显示使用依赖性。 7.当单个钙通道电流记录在细胞附着的贴片(钡作为电荷载体)中时,BDM的浸浴可降低通道在打开状态下花费的时间百分比。 8. 8溴环AMP的超融合将整体宏观'ICa'恢复为BDM之前的幅度。这是由于通道打开频率的显着提高。 9.我们建议BDM通过细胞质改变神经元L型钙通道的环状AMP依赖性蛋白激酶调节。在存在BDM的情况下,8-溴环AMP激活的短暂高频开口可能反映了控制通道门控的快速磷酸化-脱磷酸化序列。

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