非经典嗜色蛋白在甲壳类红细胞调控中的可能作用。

L E Nery, M A Da Silva, A M Castrucci
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引用次数: 16

摘要

色素分散激素(PDH)和色素浓缩激素(PCH)两种神经肽分别促进淡水虾红细胞的离心和向心颗粒转运。在此,我们首次证明了甲壳类非经典的嗜色蛋白对potiuna红细胞色素迁移的影响。虽然proctolin, 20-hydroxyecdisone (20HE)和褪黑素是无效的,但甲壳类心脏活性肽(CCAP)是一种完全激动剂,以剂量依赖的方式诱导色素分散,EC(50)为9.5。10(-7) M.此外,低于最小有效剂量(10(-8)和10(-7)M)的CCAP浓度降低了PCH诱导的聚集,剂量-反应曲线(DRC)分别向右移动至PCH的2.2倍和29倍。令人惊讶的是,褪黑素(10(-7)和10(-6)M)也分别向右移动了8.7和46.5倍,DRC到PCH。综上所述,我们的数据表明,除了PCH和PDH外,CCAP和褪黑激素也调节着甲壳类动物红细胞内色素的迁移。[j] .中国医学工程学报,2004(4):711-716。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Possible role of non-classical chromatophorotropins on the regulation of the crustacean erythrophore.

Two neuropeptides, the pigment dispersing hormone (PDH) and the pigment concentrating hormone (PCH), are well known to respectively promote centrifugal and centripetal granule translocation in the freshwater shrimp Macrobrachium potiuna erythrophores. Herein, we demonstrate for the first time the effects of crustacean non-classical chromatophorotropins on the pigment migration in M. potiuna erythrophores. Although proctolin, 20-hydroxyecdisone (20HE), and melatonin were ineffective, the crustacean cardioactive peptide (CCAP) was a full agonist, inducing pigment dispersion in a dose-dependent manner with EC(50) of 9.5. 10(-7) M. In addition, concentrations of CCAP lower than the minimal effective dose (10(-8) and 10(-7) M) decreased the PCH-induced aggregation, shifting rightward the dose-response curve (DRC) to PCH 2.2- and 29-fold, respectively. Surprisingly, melatonin (10(-7) and 10(-6) M) also shifted to the right 8.7- and 46.5-fold, respectively, the DRC to PCH. In conclusion, our data demonstrate that besides PCH and PDH, CCAP and melatonin also regulate the pigment migration within the crustacean erythrophore. J. Exp. Zool. 284:711-716, 1999.

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