The reduction of Calpain-10 expression is associated with risk polymorphisms in obese children

Patricia Mendoza-Lorenzo1, Ana Maria Salazar, Eladio Cortes-Arenas

  • 1Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Mexico.

Gene
|December 25, 2012
PubMed

Insights

Childhood obesity is linked to Calpain-10 gene variations. Lower Calpain-10 expression in overweight/obese children correlates with specific gene polymorphisms and metabolic changes, suggesting early risk for type 2 diabetes.

Area of Science:

  • Genetics
  • Metabolic Health
  • Pediatrics

Background:

  • Childhood obesity is a significant public health issue with long-term implications.
  • Calpain-10 gene (CAPN10) polymorphisms and reduced expression are linked to type 2 diabetes risk.
  • Investigating CAPN10's role in pediatric metabolic impairment is crucial.

Purpose of the Study:

  • To explore the contribution of Calpain-10 in childhood metabolic impairment.
  • To evaluate risk polymorphisms in the CAPN10 gene and their effect on Calpain-10 mRNA levels in children.
  • To associate CAPN10 gene status with anthropometric and clinical values in a pediatric cohort.

Main Methods:

  • Genotyping of CAPN10 polymorphisms (SNP-44, SNP-43, InDel-19, SNP-63) in 161 Mexican children (4-18 years).
  • Classification of participants into healthy weight (HW), overweight (OW), and obese (OB) groups.
  • Measurement of Calpain-10 mRNA and protein expression, alongside anthropometric and clinical data analysis.

Main Results:

  • Reduced Calpain-10 mRNA and protein expression observed in OW and OB groups compared to HW.
  • Significant decrease in Calpain-10 mRNA in individuals homozygous for SNP-44 (T/T) and InDel-19 (3/3), individually and combined.
  • Polymorphisms associated with higher BMI, weight percentiles, z-scores, waist circumference, fasting glucose, and altered beta cell function.

Conclusions:

  • CAPN10 gene polymorphisms and altered expression in childhood are associated with metabolic impairment.
  • These early-life alterations may predispose individuals to adult metabolic dysfunction, including type 2 diabetes.
  • Further research is warranted to understand the long-term impact of CAPN10 variations in pediatric populations.

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