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首页> 外文期刊>American Journal of Physiology >Leucokinin activates Ca(2+)-dependent signal pathway in principal cells of Aedes aegypti Malpighian tubules.
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Leucokinin activates Ca(2+)-dependent signal pathway in principal cells of Aedes aegypti Malpighian tubules.

机译:白细胞激肽激活埃及伊蚊Malpighian小管的主要细胞中的Ca(2+)依赖信号通路。

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摘要

The role of Ca(2+) in mediating the diuretic effects of leucokinin-VIII was studied in isolated perfused Malpighian tubules of the yellow fever mosquito, Aedes aegypti. Peritubular leucokinin-VIII (1 microM) decreased the transepithelial resistance from 11.2 to 2.6 kOmega. cm, lowered the transepithelial voltage from 42.8 to 2.7 mV, and increased transepithelial Cl(-) diffusion potentials 5.1-fold. In principal cells of the tubules, leucokinin-VIII decreased the fractional resistance of the basolateral membrane from 0.733 to 0.518. These effects were reversed by the peritubular Ca(2+)-channel blocker nifedipine, suggesting a role of peritubular Ca(2+) and basolateral Ca(2+) channels in signal transduction. In Ca(2+)-free Ringer bath, the effects of leucokinin-VIII were partial and transient but were fully restored after the bath Ca(2+) concentration was restored. Increasing intracellular Ca(2+) with thapsigargin duplicated the effects of leucokinin-VIII, provided that peritubular Ca(2+) was present. The kinetics of the effects of leucokinin-VIII is faster than that of thapsigargin, suggesting the activation of inositol-1,4,5-trisphosphate-receptor channels of intracellular stores. Store depletion may then bring about Ca(2+) entry into principal cells via nifedipine-sensitive Ca(2+) channels in the basolateral membrane.
机译:Ca(2+)的作用介导白细胞分裂素-VIII的利尿作用在黄热蚊,埃及伊蚊的孤立灌流的马尔皮基小管中进行了研究。周围性白细胞分裂素-VIII(1 microM)将跨上皮的抵抗力从11.2降低至2.6 kOmega。厘米,降低跨上皮电压从42.8到2.7 mV,并增加跨上皮Cl(-)扩散电位5.1倍。在肾小管的主要细胞中,白细胞分裂素-VIII将基底外侧膜的部分阻力从0.733降低到0.518。这些作用被肾小管周围Ca(2+)通道阻滞剂硝苯地平逆转,表明肾小管周围Ca(2+)和基底外侧Ca(2+)通道在信号传导中的作用。在无Ca(2+)的林格浴中,白细胞分裂素-VIII的影响是部分和短暂的,但在恢复Ca(2+)浓度后可完全恢复。 thapsigargin增加细胞内Ca(2+)复制了白细胞分裂素-VIII的作用,条件是存在肾小管周围Ca(2+)。白细胞激肽VIII的动力学比毒胡萝卜素的动力学更快,表明细胞内存储的肌醇-1,4,5-三磷酸受体通道被激活。然后,存储耗尽可能会导致Ca(2+)通过基底外侧膜中的硝苯地平敏感的Ca(2+)通道进入主要细胞。

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