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一种针对挪威龙虾重组甲壳动物高血糖激素的抗体与几种软甲纲甲壳动物类群的神经内分泌器官发生交叉反应。

An antibody to recombinant crustacean hyperglycaemic hormone of Nephrops norvegicus cross-reacts with neuroendocrine organs of several taxa of malacostracan Crustacea.

作者信息

Giulianini P G, Pandolfelli N, Lorenzon S, Ferrero E A, Edomi P

机构信息

BRAIN Centre for Neuroscience, Department of Biology, University of Trieste, via Licio Giorgieri 7, 34127 Trieste, Italy.

出版信息

Cell Tissue Res. 2002 Feb;307(2):243-54. doi: 10.1007/s00441-001-0484-9. Epub 2001 Nov 22.

Abstract

The crustacean hyperglycaemic hormones (cHHs) are multifunctional neuropeptides that play a central role in the physiology of crustaceans. A partial cDNA coding for cHH of the Norway lobster, Nephrops norvegicus, was cloned; this cDNA was fused to glutathione- S-transferase (GST) to obtain a recombinant fusion protein that was used to raise a rabbit antiserum and to perform a biological assay. The specificity of the purified antibody was demonstrated by means of Western blotting. To validate the specificity of the purified antibody to the cHH of N. norvegicus and its cross-reactivity with other species, we performed standard immunocytochemistry of the eyestalk on: (1) paraffin sections of the decapod species N. norvegicus, Munida rugosa and Astacus leptodactylus and of the stomatopod Squilla mantis; (2) semithin resin sections of N. norvegicus and Palaemon elegans; (3) ultrathin sections of N. norvegicus sinus gland (transmission electron microscopy studies). The pattern of immunoreactivity shown by N. norvegicus eyestalk sections conforms to distribution, relative amount and ultrastructural features of cHH-containing neurons and nerve endings as reported in the previous literature. In all the crustacean species examined, the antibody marks precisely the X organ-sinus gland complex and unspecific staining is completely lacking. In addition, its specific cross-reaction by immunoprecipitation depletes shrimp eyestalk extract of hyperglycaemic activity in an in vivo bioassay. The results obtained show a cHH-specific molecular recognition despite the fact that the species tested belong to systematic groups increasingly remote in the phylogenetic tree. The antibody could be used for advancing our knowledge on cHH activity in a variety of crustacean species, e.g. for monitoring reproductive and stress conditions.

摘要

甲壳类高血糖激素(cHHs)是多功能神经肽,在甲壳类动物的生理过程中起着核心作用。克隆了编码挪威龙虾(Nephrops norvegicus)cHH的部分cDNA;该cDNA与谷胱甘肽-S-转移酶(GST)融合,以获得重组融合蛋白,用于制备兔抗血清并进行生物学测定。通过蛋白质免疫印迹法证明了纯化抗体的特异性。为了验证纯化抗体对挪威龙虾cHH的特异性及其与其他物种的交叉反应性,我们对以下样本的眼柄进行了标准免疫细胞化学分析:(1)十足目物种挪威龙虾、皱纹刺龙虾(Munida rugosa)、细指螯虾(Astacus leptodactylus)和口足目虾蛄(Squilla mantis)的石蜡切片;(2)挪威龙虾和秀丽白虾(Palaemon elegans)的半薄树脂切片;(3)挪威龙虾窦腺的超薄切片(透射电子显微镜研究)。挪威龙虾眼柄切片显示的免疫反应模式与先前文献报道的含cHH神经元和神经末梢的分布、相对数量和超微结构特征一致。在所检查的所有甲壳类物种中,抗体精确标记了X器官-窦腺复合体,完全没有非特异性染色。此外,通过免疫沉淀法进行的特异性交叉反应在体内生物测定中耗尽了虾眼柄提取物的高血糖活性。尽管所测试的物种属于系统发育树中亲缘关系越来越远的分类群,但获得的结果显示了cHH特异性分子识别。该抗体可用于增进我们对多种甲壳类物种中cHH活性的了解,例如用于监测生殖和应激状况。

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