Bedoukian   RussellIPM   RussellIPM   Piezoelectric Micro-Sprayer


Home
Animal Taxa
Plant Taxa
Semiochemicals
Floral Compounds
Semiochemical Detail
Semiochemicals & Taxa
Synthesis
Control
Invasive spp.
References

Abstract

Guide

Alphascents
Pherobio
InsectScience
E-Econex
Counterpart-Semiochemicals
Print
Email to a Friend
Kindly Donate for The Pherobase

« Previous AbstractThe effects of outdoor air supply rate on work performance during 8-h work period    Next AbstractA novel functional cross-interaction between opioid and pheromone signaling may be involved in stress avoidance in Caenorhabditis elegans »

Int J Mol Sci


Title:Ascaroside Pheromones: Chemical Biology and Pleiotropic Neuronal Functions
Author(s):Park JY; Joo HJ; Park S; Paik YK;
Address:"Interdisciplinary Program in Integrative Omics for Biomedical Science, Yonsei University, Seoul 03722, Korea. Yonsei Proteome Research Center, Yonsei University, Seoul 03722, Korea. Department of Chemical Physiology and Dorris Neuroscience Center, The Scripps Research Institute, La Jolla, CA 92037, USA. Interdisciplinary Program in Integrative Omics for Biomedical Science, Yonsei University, Seoul 03722, Korea. paikyk@yonsei.ac.kr. Yonsei Proteome Research Center, Yonsei University, Seoul 03722, Korea. paikyk@yonsei.ac.kr"
Journal Title:Int J Mol Sci
Year:2019
Volume:20190809
Issue:16
Page Number: -
DOI: 10.3390/ijms20163898
ISSN/ISBN:1422-0067 (Electronic) 1422-0067 (Linking)
Abstract:"Pheromones are neuronal signals that stimulate conspecific individuals to react to environmental stressors or stimuli. Research on the ascaroside (ascr) pheromones in Caenorhabditis elegans and other nematodes has made great progress since ascr#1 was first isolated and biochemically defined in 2005. In this review, we highlight the current research on the structural diversity, biosynthesis, and pleiotropic neuronal functions of ascr pheromones and their implications in animal physiology. Experimental evidence suggests that ascr biosynthesis starts with conjugation of ascarylose to very long-chain fatty acids that are then processed via peroxisomal beta-oxidation to yield diverse ascr pheromones. We also discuss the concentration and stage-dependent pleiotropic neuronal functions of ascr pheromones. These functions include dauer induction, lifespan extension, repulsion, aggregation, mating, foraging and detoxification, among others. These roles are carried out in coordination with three G protein-coupled receptors that function as putative pheromone receptors: SRBC-64/66, SRG-36/37, and DAF-37/38. Pheromone sensing is transmitted in sensory neurons via DAF-16-regulated glutamatergic neurotransmitters. Neuronal peroxisomal fatty acid beta-oxidation has important cell-autonomous functions in the regulation of neuroendocrine signaling, including neuroprotection. In the future, translation of our knowledge of nematode ascr pheromones to higher animals might be beneficial, as ascr#1 has some anti-inflammatory effects in mice. To this end, we propose the establishment of pheromics (pheromone omics) as a new subset of integrated disciplinary research area within chemical ecology for system-wide investigation of animal pheromones"
Keywords:"Animals Biosynthetic Pathways Caenorhabditis elegans/chemistry/*physiology Caenorhabditis elegans Proteins/metabolism Glycolipids/chemistry/*metabolism Neurons/chemistry/*physiology Neuroprotection Pheromones/chemistry/*metabolism Receptors, G-Protein-Cou;"
Notes:"MedlinePark, Jun Young Joo, Hyoe-Jin Park, Saeram Paik, Young-Ki eng 2017R1A2B3003200/National Research Foundation of Korea/ Review Switzerland 2019/08/14 Int J Mol Sci. 2019 Aug 9; 20(16):3898. doi: 10.3390/ijms20163898"

 
Back to top
 
Citation: El-Sayed AM 2024. The Pherobase: Database of Pheromones and Semiochemicals. <http://www.pherobase.com>.
© 2003-2024 The Pherobase - Extensive Database of Pheromones and Semiochemicals. Ashraf M. El-Sayed.
Page created on 22-11-2024