Brain RFamide Neuropeptides in Stress-Related Psychopathologies

Author:

Kovács Anita1ORCID,Szabó Evelin1,László Kristóf1,Kertes Erika1,Zagorácz Olga1ORCID,Mintál Kitti1,Tóth Attila1,Gálosi Rita1,Berta Bea1,Lénárd László1,Hormay Edina1,László Bettina1,Zelena Dóra1ORCID,Tóth Zsuzsanna E.2ORCID

Affiliation:

1. Institute of Physiology, Medical School, Centre for Neuroscience, Szentágothai Research Centre, University of Pécs, H7624 Pécs, Hungary

2. Department of Anatomy, Histology and Embryology, Semmelweis University, H1094 Budapest, Hungary

Abstract

The RFamide peptide family is a group of proteins that share a common C-terminal arginine–phenylalanine–amide motif. To date, the family comprises five groups in mammals: neuropeptide FF, LPXRFamides/RFamide-related peptides, prolactin releasing peptide, QRFP, and kisspeptins. Different RFamide peptides have their own cognate receptors and are produced by different cell populations, although they all can also bind to neuropeptide FF receptors with different affinities. RFamide peptides function in the brain as neuropeptides regulating key aspects of homeostasis such as energy balance, reproduction, and cardiovascular function. Furthermore, they are involved in the organization of the stress response including modulation of pain. Considering the interaction between stress and various parameters of homeostasis, the role of RFamide peptides may be critical in the development of stress-related neuropathologies. This review will therefore focus on the role of RFamide peptides as possible key hubs in stress and stress-related psychopathologies. The neurotransmitter coexpression profile of RFamide-producing cells is also discussed, highlighting its potential functional significance. The development of novel pharmaceutical agents for the treatment of stress-related disorders is an ongoing need. Thus, the importance of RFamide research is underlined by the emergence of peptidergic and G-protein coupled receptor-based therapeutic targets in the pharmaceutical industry.

Funder

National Brain Research Program (NAP 3.0) of the Hungarian Academy of Sciences

National Research Development and Innovation Office of Hungary

Thematic Excellence Program 2021 Health Sub-program of the Ministry for Innovation and Technology in Hungary

Ministry of Innovation and Technology of Hungary

Publisher

MDPI AG

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