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      Regulation of Melanocortin-5 Receptor Pharmacology by Two Isoforms of MRAP2 in Ricefield Eel ( Monopterus albus)

      abstract
      , MS 1 , , PhD 2 , , PhD 2 , , PhD 1
      Journal of the Endocrine Society
      Oxford University Press

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          Abstract

          The melanocortin-5 receptor (MC5R) has been implicated in the regulation of exocrine gland secretion, immune regulation, and muscle fatty acid oxidation. However, its function in fish is not well established. Melanocortin-2 receptor accessory protein 2 (MRAP2) can modulate trafficking, ligand binding, and signaling of melanocortin receptors. Ricefield eel ( Monopterus albus) is an economically and evolutionarily important fish widely distributed in tropics and subtropics. To explore potential interaction between eel MC5R and MRAP2, herein we cloned ricefield eel mc5r, mrap2X1 and mrap2X2. Eel mc5r consisted of a 1056 bp open reading frame encoding a protein of 351 amino acids. Eel mrap2X1 consisted of a 708 bp open reading frame encoding a protein of 235 amino acids, while eel mrap2X2consisted of a 567 bp open reading frame encoding a protein of 188 amino acids. Multiple sequence alignment showed that maMRAP2X1 and maMRAP2X2 shared 90.43% identity. Interestingly, maMRAP2X2 lost the transmembrane domain. Phylogenetic analysis showed that maMC5R and maMRAP2s were closely related to piscine MC5Rs and MRAP2s, respectively. The maMC5R was further demonstrated to be a functional receptor and could be modulated by maMRAP2s in pharmacological studies. Three agonists, [Nle 4, D-Phe 7]-alpha-melanocyte stimulating hormone (NDP-MSH), alpha-MSH, and adrenocorticotropin (ACTH), could bind to maMC5R and induce intracellular cAMP production dose-dependently. Compared to human MC5R (hMC5R), maMC5R displayed a significantly decreased B max but higher binding affinity to alpha-MSH or ACTH. No significant difference in constitutive activity was observed between hMC5R and maMC5R. When stimulated with α-MSH and ACTH, maMC5R showed significantly lower EC 50 and R max than that of hMC5R. Eel MRAP2s had no effect on cell surface and total expression of maMC5R, whereas they significantly increased B max. Only maMRAP2X2 significantly decreased the binding affinity of ACTH. Both maMRAP2X1 and maMRAP2X2 significantly reduced R max but did not affect EC 50 in response to alpha-MSH or ACTH stimulation. The availability of maMC5R pharmacological characteristics and the modulation by maMRAP2s will facilitate the investigation of its function in regulating diverse physiological processes in ricefield eel.

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          Author and article information

          Journal
          J Endocr Soc
          J Endocr Soc
          jes
          Journal of the Endocrine Society
          Oxford University Press (US )
          2472-1972
          03 May 2021
          03 May 2021
          03 May 2021
          : 5
          : Suppl 1 , ENDO 2021 Abstracts Annual Meeting of the Endocrine Society
          : A508
          Affiliations
          [1 ] Auburn University , Auburn University, AL, USA
          [2 ] Yangtze University , Jingzhou, China
          Article
          bvab048.1039
          10.1210/jendso/bvab048.1039
          8090599
          60b2acf1-438f-4886-a55f-a13386a27fdf
          © The Author(s) 2021. Published by Oxford University Press on behalf of the Endocrine Society.

          This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence ( http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com

          History
          Page count
          Pages: 1
          Categories
          Genetics and Development (including Gene Regulation)
          From Bench to Bedside: Genetics, Development and Cell Signaling in Endocrinology
          AcademicSubjects/MED00250

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