Discovery and functional characterization of a bombesin-type neuropeptide signaling system in an invertebrate

W Weiling Huang (Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London) X Xingxing Zhong (Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London) C Cleidiane G. Zampronio (Proteomics Facility Research Technology Platform, School of Life Sciences, University of Warwick) A Andrew R. Bottrill (Proteomics Facility Research Technology Platform, School of Life Sciences, University of Warwick) K Kite G. E. Jones (Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London) A Ana B. Tinoco (Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London) L Lijin Guo (International Magnesium Institute, College of Resources and Environment, Fujian Agriculture and Forestry University) M Michaela Egertová (Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London) O Olivier Mirabeau (Brain-Immune Communication Lab, Institut Pasteur, Université Paris Cité, Bioinformatics and Biostatistics Hub) M Maurice R. Elphick (Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London)

Abstract

Neuropeptide signaling systems are key regulators of physiological and behavioral processes in animals. However, the evolutionary history of some neuropeptides originally discovered in vertebrates is unknown. The peptide bombesin (BN) was first isolated from the skin of the toad Bombina bombina and subsequently BN-related neuropeptides have been identified in other chordates, including gastrin-releasing peptide (GRP) and neuromedin B (NMB) in mammals, and a GRP-like peptide in the cephalochordate Branchiostoma japonicum . However, BN-type neuropeptides have hitherto not been identified in any nonchordate animals. Here, we report the discovery and functional characterization of a BN-type neuropeptide signaling system in an echinoderm—the starfish Asterias rubens . BN-type precursor proteins were identified in several echinoderm species based on their amino acid sequences and gene structures, and the mature structure of the A. rubens BN-type neuropeptide ArBN was determined using mass spectrometry. A protein related to vertebrate GRP/NMB-type G protein–coupled receptors was identified experimentally as the receptor for ArBN in A. rubens . Analysis of the distribution of the ArBN precursor in A. rubens using mRNA in situ hybridization and immunohistochemistry revealed a widespread pattern of expression in the central nervous system, digestive system, and locomotory organs. Moreover, effects of ArBN in A. rubens included contraction and retraction of the evertible stomach and inhibition of feeding behavior. Our findings show that the evolutionary history of BN-type neuropeptide signaling can be traced back to the deuterostome common ancestor of echinoderms and chordates. Furthermore, an ancient role of BN-type neuropeptides as regulators of feeding behavior has been revealed.

Article Details

Volume / Issue Vol. 122, Issue 13
Published April 01, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (10)

W

Weiling Huang

Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London

X

Xingxing Zhong

Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London

C

Cleidiane G. Zampronio

Proteomics Facility Research Technology Platform, School of Life Sciences, University of Warwick

A

Andrew R. Bottrill

Proteomics Facility Research Technology Platform, School of Life Sciences, University of Warwick

K

Kite G. E. Jones

Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London

A

Ana B. Tinoco

Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London

L

Lijin Guo

International Magnesium Institute, College of Resources and Environment, Fujian Agriculture and Forestry University

M

Michaela Egertová

Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London

O

Olivier Mirabeau

Brain-Immune Communication Lab, Institut Pasteur, Université Paris Cité, Bioinformatics and Biostatistics Hub

M

Maurice R. Elphick

Centre for Evolutionary and Functional Genomics, School of Biological and Behavioural Sciences, Queen Mary University of London