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Pituitary adenylate cyclase-activating polypeptide (PACAP) type 1 receptor (PAC1R) co-localizes with activity-dependent neuroprotective protein (ADNP) in the mouse brains
Authors:Nakamachi Tomoya  Ohtaki Hirokazu  Yofu Sachiko  Dohi Kenji  Watanabe Jun  Hayashi Daisuke  Matsuno Ryosuke  Nonaka Naoko  Itabashi Kazuo  Shioda Seiji
Institution:

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

bICGEB, International Centre for Genetic Engineering and Biotechnology, AREA Science Park, Padriciano 99, I-34012 Trieste, Italy

cOGS, Biological Oceanography Department, Via Piccard 54, I-34014 S. Croce (TS), Italy

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.
Keywords:Amidation  Bioassay  Crayfish  Crustacean hyperglycemic hormone  Recombinant peptide
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