Frontiers in genetics

LncRNA IMFNCR Supports Fat Cell Development in Muscle by Blocking miR-128-3p and miR-27b-3p

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Abstract

An up-regulated called intramuscular fat-associated long non-coding RNA (IMFNCR) promotes intramuscular adipocyte differentiation.

  • IMFNCR acts as a molecular sponge for miR-128-3p and miR-27b-3p.
  • is identified as a direct target of both miR-128-3p and miR-27b-3p in chicken.
  • A high-fat and high-protein diet is associated with reduced levels of IMFNCR.
  • IMFNCR level shows a positive correlation with PPARG mRNA levels in chicken breast muscle tissues.
  • These findings suggest that IMFNCR may influence intramuscular fat deposition and poultry meat quality.

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What this is

  • Intramuscular fat (IMF) is crucial for poultry meat quality, affecting tenderness and flavor.
  • This study investigates the role of a long non-coding RNA (), IMFNCR, in promoting intramuscular adipocyte differentiation.
  • IMFNCR acts as a molecular sponge for miR-128-3p and miR-27b-3p, enhancing the expression of , a key regulator of adipogenesis.

Essence

  • IMFNCR promotes intramuscular adipocyte differentiation by sponging miR-128-3p and miR-27b-3p, leading to increased expression. This mechanism may enhance poultry meat quality by improving IMF deposition.

Key takeaways

  • IMFNCR is significantly upregulated during the differentiation of intramuscular adipocytes, indicating its potential role in fat deposition in poultry.
  • Knockdown of IMFNCR reduces the expression of adipogenic markers and FABP4, suggesting its critical function in adipocyte differentiation.
  • High-fat and high-protein diets significantly decrease IMFNCR and levels in chicken breast muscle, indicating dietary influence on fat deposition.

Caveats

  • The study primarily focuses on in vitro findings, which may not fully replicate in vivo conditions.
  • Further research is needed to explore the broader implications of IMFNCR regulation on poultry meat quality.

Definitions

  • lncRNA: Long non-coding RNA, a type of RNA that does not encode proteins but plays roles in regulating gene expression.
  • PPARG: Peroxisome proliferator-activated receptor gamma, a transcription factor critical for adipocyte differentiation and lipid metabolism.

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