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小龙虾物种中cHH C末端酰胺化的功能方面。

Functional aspects of cHH C-terminal amidation in crayfish species.

作者信息

Mosco Alessandro, Edomi Paolo, Guarnaccia Corrado, Lorenzon Simonetta, Pongor Sándor, Ferrero Enrico A, Giulianini Piero G

机构信息

BRAIN Center, Department of Biology, University of Trieste, Via Giorgeri 7, I-34127 Trieste, Italy.

出版信息

Regul Pept. 2008 Apr 10;147(1-3):88-95. doi: 10.1016/j.regpep.2008.01.005. Epub 2008 Jan 17.

Abstract

The crustacean hyperglycemic hormone is the most abundant neuropeptide present in the eyestalk of Crustacea and its main role is to control the glucose level in the hemolymph. Our study was aimed at assessing the importance of C-terminal amidation for its biological activity. Two recombinant peptides were produced, Asl-rcHH-Gly with a free carboxyl terminus and Asl-rcHH-amide with an amidated C-terminus. Homologous bioassays performed on the astacid crayfish Astacus leptodactylus showed that the amidated peptide had a stronger hyperglycemic effect compared to the non-amidated peptide. To assess the relevance of amidation also in other decapods and how much the differences in the cHH amino acid sequence can affect the functionality of the peptides, we carried out heterologous bioassays on the cambarid Procambarus clarkii and palaemonid Palaemon elegans. The Asl-rcHH-amide elicited a good response in P. clarkii and in P. elegans. The injection of Asl-rcHH-Gly evoked a weak response in both species. These results prove the importance of C-terminal amidation for the biological activity of cHH in crayfish as well as the role of the peptide primary sequence for the species-specificity hormone-receptor recognition.

摘要

甲壳类高血糖激素是甲壳纲动物眼柄中含量最丰富的神经肽,其主要作用是控制血淋巴中的葡萄糖水平。我们的研究旨在评估C末端酰胺化对其生物活性的重要性。制备了两种重组肽,一种是具有游离羧基末端的Asl-rcHH-Gly,另一种是C末端酰胺化的Asl-rcHH-amide。对螯虾Astacus leptodactylus进行的同源生物测定表明,与未酰胺化的肽相比,酰胺化的肽具有更强的高血糖作用。为了评估酰胺化在其他十足目动物中的相关性以及cHH氨基酸序列的差异对肽功能的影响程度,我们对克氏原螯虾Procambarus clarkii和秀丽白虾Palaemon elegans进行了异源生物测定。Asl-rcHH-amide在克氏原螯虾和秀丽白虾中均引发了良好的反应。注射Asl-rcHH-Gly在这两个物种中均引发了微弱的反应。这些结果证明了C末端酰胺化对小龙虾中cHH生物活性的重要性以及肽一级序列对物种特异性激素-受体识别的作用。

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