Maternal Western-style diet programs skeletal muscle gene expression in lean adolescent Japanese macaque offspring

Insights

Maternal Western-style diet (WSD) significantly alters offspring muscle gene expression, increasing metabolic disease risk. Post-weaning diet impacts offspring only if the mother ate a control diet, highlighting maternal diet

Area of Science:

  • Nutritional Science
  • Developmental Biology
  • Genomics

Background:

  • Maternal obesity and Western-style diets (WSD) during pregnancy increase offspring risk for metabolic diseases like insulin resistance and metabolic dysfunction-associated steatotic liver disease (MASLD).
  • Previous studies showed maternal WSD led to reduced skeletal muscle mitochondrial metabolism and increased insulin resistance in offspring, even on a control diet.

Approach:

  • Utilized a nested design in a Japanese macaque model to analyze skeletal muscle gene expression in 3-year-old offspring.
  • Examined offspring from dams fed either WSD or control (CTR) diets, with offspring weaned onto either WSD or CTR diets.
  • Assessed gene expression differences considering maternal diet, maternal obesity status, and offspring's post-weaning diet.

Key Points:

  • Maternal WSD during gestation and lactation was the primary driver of differential gene expression (DEG) in offspring skeletal muscle.
  • Identified key affected pathways: insulin signaling (PI3K-Akt, MAP-kinase), muscle regeneration, and transcription-translation feedback loops.
  • Offspring of obese dams on WSD showed no significant difference in muscle DEG compared to offspring of lean dams on WSD.
  • Post-weaning WSD affected offspring gene expression only in those whose mothers consumed a CTR diet.

Conclusions:

  • Maternal diet composition has a profound and lasting impact on the offspring's muscle transcriptome.
  • Maternal diet influences the offspring's transcriptional response to a post-weaning WSD, potentially explaining increased metabolic disease susceptibility.