The allatotropin/orexin system as an example of immunomodulatory properties of neuropeptides.

Insect Biochem Mol Biol

Department of Animal Physiology and Developmental Biology, Faculty of Biology, Adam Mickiewicz University, Poznań, Poland. Electronic address:

Published: August 2024

AI Article Synopsis

  • * This research focuses on the relationship between allatotropin (AT) in insects and immune system functions, drawing parallels to the orexin (OX) neuropeptides found in vertebrates.
  • * Findings show functional similarities between insect ATs and vertebrate OXs, including effects on immune responses and gene expression linked to the neuroendocrine system, providing insights into the evolutionary development of hormonal immune regulation.

Article Abstract

The central nervous system (CNS) plays a critical role in signal integration in animals and allows the orchestration of life processes to maintain homeostasis. Current research clearly shows that inflammatory processes can also be modulated by the CNS via the neuroendocrine system. One of the neuropeptide families that participate in vertebrates in this process is orexins (OXs). Interestingly, our previous results suggested that a similar dependency may also exist between neuropeptides and immune system activity in insects. Due to the structural homology of orexin and allatotropin receptors and the functional similarity between these two neuropeptide families, the main aim of this research was to perform a complex analysis of the relationships between allatotropin (AT) and the insect immune response. Our results revealed functional similarities between vertebrate OXs and insect ATs. Similar effects were observed in the profile of the expression level of the gene encoding the AT precursor in the Tenebrio molitor nervous system and in the general action of Tenmo-AT on selected immune parameters of the tested beetles. Moreover, for the first time in insects, we confirmed the role of cytokines in the modulation of neuroendocrine system by determining the effect of Spätzle-like protein injection on the expression of genes encoding AT precursor and receptor. All these results are important for understanding the evolutionary basis of hormonal regulation of the immune response.

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Source
http://dx.doi.org/10.1016/j.ibmb.2024.104149DOI Listing

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