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February 6, 2026Scientific Reports0 citationsOpen Access

Loss-of-function mutations in the melanocortin-2-receptor (mc2r) lead to skin hyperpigmentation in teleost fish

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EBElisa Barreiro-DocíoLGLaura Guerrero-PeñaPSPriyanka Soni

Key Points

  • This research aims to explore the role of mc2r in pigmentation and steroidogenesis in zebrafish.
  • Utilized CRISPR/Cas9 technology to create mc2r knockout zebrafish
  • Conducted transcriptomic analyses to assess gene expression related to pigmentation and metabolism
  • Measured melanophore and xanthophore numbers to evaluate pigmentation changes
  • Knockout zebrafish exhibited significant hyperpigmentation with increased melanophore and xanthophore populations
  • Impaired steroidogenesis was observed in mc2r knockout zebrafish
  • Transcriptomic analysis showed upregulation of genes related to melanin synthesis and metabolic processes

Abstract

Abstract Melanocortins regulate pigmentation via melanocortin receptors (MCRs), which are highly conserved across vertebrates. Unlike other MCRs, the melanocortin 2 receptor (MC2R) is exclusively activated by ACTH; however, its role in pigmentation remains unclear. Using CRISPR/Cas9-generated mc2r knockout zebrafish, we demonstrated that the loss of mc2r in zebrafish results in impaired interrenal steroidogenesis and pronounced hyperpigmentation characterized by an increased number of melanophores and xanthophores while preserving normal patterning. Transcriptomic analyses revealed the upregulation of genes involved in melanosome formation, melanin synthesis, lipid metabolism, and carotenoid accumulation. These findings demonstrate that, in addition to controlling steroidogenesis, mc2r plays a key role in pigment cell development and metabolic regulation.

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Cite This Study

Barreiro-Docío et al. (2026) studied this question.

synapsesocial.com/papers/698586118f7c464f23009fe4https://doi.org/10.1038/s41598-026-37998-7
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