Crustacean hyperglycaemic hormone (CHH)-like peptides and CHH-precursor-related peptides from pericardial organ neurosecretory cells in the shore crab, Carcinus maenas, are putatively spliced and modified products of multiple genes

Author:

DIRCKSEN Heinrich1,BÖCKING Detlef1,HEYN Uwe1,MANDEL Christa1,CHUNG J. Sook2,BAGGERMAN Geert3,VERHAERT Peter3,DAUFELDT Sabine4,PLÖSCH Torsten5,JAROS Peter P.5,WAELKENS Etienne6,KELLER Rainer1,WEBSTER Simon G.2

Affiliation:

1. Institut für Zoophysiologie, Universität Bonn, Endenicher Allee 11-13, D-53115 Bonn, Germany

2. School of Biological Sciences, University of Wales, Bangor, Gwynedd, U.K.

3. Laboratory of Developmental Physiology and Molecular Biology, Katholieke Universiteit Leuven, Leuven, Belgium

4. Institut für Klinische Biochemie, University of Bonn, Bonn, Germany

5. Fachbereich 7, Abteilung Zoophysiologie, University of Oldenburg, Oldenburg, Germany

6. Laboratory of Biochemistry, Katholieke Universiteit Leuven, Leuven, Belgium

Abstract

About 24 intrinsic neurosecretory neurons within the pericardial organs (POs) of the crab Carcinus maenas produce a novel crustacean hyperglycaemic hormone (CHH)-like peptide (PO-CHH) and two CHH-precursor-related peptides (PO-CPRP I and II) as identified immunochemically and by peptide chemistry. Edman sequencing and MS revealed PO-CHH as a 73 amino acid peptide (8630Da) with a free C-terminus. PO-CHH and sinus gland CHH (SG-CHH) share an identical N-terminal sequence, positions 1–40, but the remaining sequence, positions 41–73 or 41–72, differs considerably. PO-CHH may have different precursors, as cDNA cloning of PO-derived mRNAs has revealed several similar forms, one exactly encoding the peptide. All PO-CHH cDNAs contain a nucleotide stretch coding for the SG-CHH41–76 sequence in the 3′-untranslated region (UTR). Cloning of crab testis genomic DNA revealed at least four CHH genes, the structure of which suggest that PO-CHH and SG-CHH arise by alternative splicing of precursors and possibly post-transcriptional modification of PO-CHH. The genes encode four exons, separated by three variable introns, encoding part of a signal peptide (exon I), the remaining signal peptide residues, a CPRP, the PO-CHH1–40/SG-CHH1–40 sequences (exon II), the remaining PO-CHH residues (exon III) and the remaining SG-CHH residues and a 3′-UTR (exon IV). Precursor and gene structures are more closely related to those encoding related insect ion-transport peptides than to penaeid shrimp CHH genes. PO-CHH neither exhibits hyperglycaemic activity in vivo, nor does it inhibit Y-organ ecdysteroid synthesis in vitro. From the morphology of the neurons it seems likely that novel functions remain to be discovered.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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