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首页> 外文期刊>The Journal of Physiology >Direct autocrine inhibition and cAMP-dependent potentiation of single L-type Ca2+ channels in bovine chromaffin cells.
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Direct autocrine inhibition and cAMP-dependent potentiation of single L-type Ca2+ channels in bovine chromaffin cells.

机译:牛嗜铬细胞中单个L型Ca2 +通道的直接自分泌抑制和cAMP依赖性增强。

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Using the cell-attached recording configuration, we found that in adult bovine chromaffin cells there exists a direct membrane-delimited inhibition of single Bay K-modified L-channels mediated by opioids and ATP locally released in the recording pipette. This autocrine modulation is mediated by pertussis toxin (PTX)-sensitive G-proteins and causes a 50 % decrease of the open channel probability (Po) and an equivalent percentage increase of null sweeps at +10 mV with no changes to the activation kinetics, single channel conductance and mean open time. The decrease in Po is mainly due to an increase in the occurrence and duration of slow closed times (> 40 ms). Addition of purinergic and opioidergic antagonists (suramin and naloxone) or cell pre-treatment with PTX removes the inhibition while addition of ATP and opioids inside the pipette, but not outside, mimics the effect. Strong pre-pulses (+150 mV, 280 ms) followed by short repolarizations are unable to remove the inhibition at test potential (+10 mV). Increasing the level of cAMP by either direct application of 8-(4-chlorophenylthio)-cAMP (8-CPT-cAMP) or mixtures of forskolin and 1-methyl-3-isobutylxanthine (IBMX) potentiates the activity of L-channels by increasing the mean open time and decreasing the mean closed time and percentage of null sweeps. The cAMP-induced potentiation occurs regardless of whether the G-protein-mediated inhibition is activated by ATP and opioids or inactivated by PTX. Protein kinase inhibitors (H7 and H89) prevent the effects of cAMP without altering the basal autocrine modulation associated with PTX-sensitive G-proteins. Our results provide new evidence for the coexistence of two distinct modulations that may converge on the same neuroendocrine L-channel: a direct G-protein-dependent inhibition and a cAMP-mediated potentiation, which may work in combination to regulate Ca2+ entry during neurosecretion.
机译:使用与细胞连接的记录配置,我们发现在成年牛嗜铬细胞中,存在直接由膜定界的抑制,该抑制作用是由在记录移液管中局部释放的阿片类药物和ATP介导的单个Bay K修饰的L通道抑制的。这种自分泌调节作用是由百日咳毒素(PTX)敏感的G蛋白介导的,导致开路概率(Po)降低了50%,在+10 mV时空扫描的等效百分比增加,而激活动力学没有变化,单通道电导和平均开放时间。 Po的降低主要是由于缓慢关闭时间(> 40 ms)的出现和持续时间的增加。添加嘌呤能和阿片类药物拮抗剂(苏拉明和纳洛酮)或用PTX进行细胞预处理可消除这种抑制作用,而在移液管内部(而非外部)添加ATP和阿片类药物可模拟这种效果。强预脉冲(+150 mV,280 ms),然后再进行短极化,无法消除测试电位(+10 mV)时的抑制作用。通过直接使用8-(4-氯苯硫基)-cAMP(8-CPT-cAMP)或福司柯林和1-甲基-3-异丁基黄嘌呤(IBMX)的混合物来提高cAMP的水平,可通过增加LAMP的活性来增强平均打开时间并减少平均关闭时间和无效扫描的百分比。无论G蛋白介导的抑制作用是被ATP和阿片样物质激活还是被PTX灭活,都会发生cAMP诱导的增强作用。蛋白激酶抑制剂(H7和H89)可预防cAMP的作用,而不会改变与PTX敏感的G蛋白相关的基础自分泌调节。我们的结果为可能会收敛于同一神经内分泌L通道的两种不同调节的共存提供了新的证据:直接G蛋白依赖性抑制作用和cAMP介导的增强作用,它们可能在调节神经分泌过程中共同调节Ca2 +的进入。

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