Fournier B, Guérineau N, Mollard P, Girardie J
Laboratoire de Neuroendocrinologie-U.R.A.C.N.R.S. 1138, Université de Bordeaux I, Talence, France.
Biochim Biophys Acta. 1994 Jan 13;1220(2):181-7. doi: 10.1016/0167-4889(94)90133-3.
Using the probe indo-1 in a microspectrofluorimetric study, it was demonstrated that the locust antidiuretic neurohormone, neuroparsin, enhanced cytosolic free Ca2+ concentrations, measured as percentages of the ratio F405/F480 (R), in epithelial cells of the African locust rectum. 5-hydroxytryptamine, whose antidiuretic effect was previously established, enhanced R in longitudinal muscular cells, and was able to increase R slightly in epithelial cells. The possibility of reciprocal Ca2+ movements between muscular and epithelial cells is discussed. Both of the neuronal molecules, which act via distinct transduction pathways (phosphoinositide turnover for neuroparsin, and Ca(2+)-dependent adenylate cyclase for 5-hydroxytryptamine), stimulated an increase in R by causing Ca2+ entry through dihydropyridine-sensitive Ca2+ channels. Cyclic nucleotides (cAMP and cGMP) lowered R in epithelial cells, the cGMP effect being interpreted as a feedback control on phosphoinositide turnover and resulting in the ability to re-establish cAMP production to levels incompatible with high PLC activity. In longitudinal muscular cells, the increase in R due to cAMP suggests the involvement of 5-hydroxytryptamine in stimulation of adenylate cyclase activity. Furthermore, results enabled the localization in epithelial cells of the transduction pathways mediating the actions of another antidiuretic factor extracted from the glandular lobes of the locust corpora cardiaca.
在一项显微分光荧光研究中,使用indo - 1探针证明,蝗虫抗利尿神经激素神经素可提高非洲蝗虫直肠上皮细胞胞质游离Ca2 +浓度,以F405/F480(R)比值的百分比来衡量。先前已证实具有抗利尿作用的5 - 羟色胺可提高纵向肌细胞中的R,并能使上皮细胞中的R略有增加。文中讨论了肌细胞和上皮细胞之间Ca2 +相互移动的可能性。这两种神经元分子通过不同的转导途径发挥作用(神经素通过磷酸肌醇代谢,5 - 羟色胺通过Ca(2 +)依赖性腺苷酸环化酶),通过二氢吡啶敏感的Ca2 +通道引起Ca2 +内流,从而刺激R增加。环核苷酸(cAMP和cGMP)可降低上皮细胞中的R,cGMP的作用被解释为对磷酸肌醇代谢的反馈控制,从而能够将cAMP产生恢复到与高PLC活性不相容的水平。在纵向肌细胞中,cAMP导致的R增加表明5 - 羟色胺参与刺激腺苷酸环化酶活性。此外,研究结果还确定了介导从蝗虫心侧体腺叶中提取的另一种抗利尿因子作用的转导途径在上皮细胞中的定位。