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The Drosophila Melanogaster Homologue of an Insect Calcitonin-Like Diuretic Peptide Stimulates V-ATPase Activity in Fruit Fly Malpighian Tubules

马尔皮基亚小管系统 小管 顶膜 内科学 刺激 内分泌学 黑腹果蝇 利尿剂 分泌物 化学 生物化学 生物 生物物理学 细胞生物学 中肠 植物 医学 幼虫 基因
作者
Geoffrey M. Coast,Simon G. Webster,Kathleen M. Schegg,Stephen S. Tobe,David A. Schooley
出处
期刊:The Journal of Experimental Biology [The Company of Biologists]
卷期号:204 (10): 1795-1804 被引量:162
标识
DOI:10.1242/jeb.204.10.1795
摘要

ABSTRACT The Drosophila melanogaster homologue of an insect calcitonin-like diuretic hormone was identified in a BLAST search of the Drosophila genome database. The predicted 31-residue amidated peptide (D. melanogaster DH31; Drome-DH31) was synthesised and tested for activity on fruit fly Malpighian tubules. It increases tubule secretion by approximately 35 % of the response obtained with a myokinin from the housefly Musca domestica (muscakinin; Musdo-K) and has an EC50 of 4.3 nmol l−1. The diuretic activities of Drome-DH31 and Musdo-K were additive when tested at threshold and supra-maximal concentrations, which suggests that they target different transport processes. In support of this, Drome-DH31 increased the rate of secretion by tubules held in bathing fluid with a reduced Cl− concentration, whereas Musdo-K did so only in the presence of Drome-DH31. Stimulation with Drome-DH31 increased the lumen-positive transepithelial potential in the main secretory segment of the tubule. This was attributed to activation of an apical electrogenic proton-translocating V-ATPase in principal cells, since it was associated with hyperpolarisation of the apical membrane potential and acidification of secreted urine by 0.25 pH units. Exogenous 8-bromo-cyclic AMP and cyclic GMP increased tubule secretion to the same extent as Drome-DH31 and, when tested together with the diuretic peptide, their activities were not additive. Stimulation with Drome-DH31 resulted in a dose-dependent increase in cyclic AMP production by tubules incubated in saline containing 0.5 mmol l−1 3-isobutyl-1-methylxanthine, whereas cyclic GMP production was unchanged. Taken together, the data are consistent with Drome-DH31 activating an apical membrane V-ATPase via cyclic AMP. Since the K+ concentration of the secreted urine was unchanged, it is likely that Drome-DH31 has an equal effect on K+ and Na+ entry across the basolateral membrane.

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