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A Novel HNF4A Mutation Causing Three Phenotypic Forms of Glucose Dysregulation in a Family
Suresh Chandran1,2,3,4, Victor Samuel Rajadurai1,2,3,4, Wai Han Hoi5
1Division of Medicine, KK Women's and Children's Hospital, Singapore, Singapore.
Abstract:
Maturity-onset diabetes of the young (MODY) classically describes dominantly inherited forms of monogenic diabetes diagnosed before 25 years of age due to pancreatic β-cell dysfunction. In contrast, mutations in certain MODY genes can also present with transient or persistent hyperinsulinemic hypoglycemia in newborn infants, reflecting instead β-cell dysregulation. Of the MODY genes described to date, only hepatocyte nuclear factor-4-alpha (HNF4A; MODY1) and hepatocyte nuclear factor-1-alpha (HNF1A; MODY3) mutations may result in a biphasic phenotype of hypoglycemia in early life and hyperglycemia in later life. We report a family with a novel HNF4A mutation with diverse phenotypic presentations of glucose dysregulation. The proband was a term, appropriate-for-gestational age male infant with symptomatic hypoglycemia on day 3 of life needing high glucose infusion rate to maintain normoglycemia. He was born to a non-obese and non-diabetic mother. Glucose regulation was optimized using diazoxide upon confirmation of hyperinsulinism. Cascade genetic screening identified the same mutation in his father and elder sister, but mother was negative. Father was diagnosed with Type 1 diabetes at 15 years of age that required insulin therapy. Proband's elder sister, born at term appropriate for gestational age, presented with transient neonatal hypoglycemia needing parenteral glucose infusion for a week followed by spontaneous resolution. The paternal grandparents were negative for this mutation, confirming a paternal de novo mutation and autosomal dominant inheritance in this family. This pedigree suggests that the presence of early-onset paternal diabetes should prompt molecular testing in infants presenting in the newborn period with diazoxide-responsive hyperinsulinemic hypoglycemia, even in the absence of maternal diabetes and macrosomia.
Insights
A novel HNF4A mutation causes varied glucose issues, from neonatal hypoglycemia to later diabetes. Early paternal diabetes may signal this condition in infants with hyperinsulinemic hypoglycemia.
Area of Science:
- Genetics
- Endocrinology
- Pediatrics
Background:
- Maturity-onset diabetes of the young (MODY) typically involves dominant inheritance and early-onset diabetes due to beta-cell dysfunction.
- Mutations in specific MODY genes, like HNF4A, can manifest as neonatal hyperinsulinemic hypoglycemia, indicating beta-cell dysregulation.
- HNF4A and HNF1A mutations are known to cause biphasic glucose dysregulation: hypoglycemia in infancy and hyperglycemia later in life.
Observation:
- A family presented with diverse glucose dysregulation phenotypes linked to a novel HNF4A mutation.
- The proband, a male infant, experienced symptomatic hypoglycemia requiring high glucose infusion and diazoxide treatment.
- The father had Type 1 diabetes diagnosed at 15, and the elder sister had transient neonatal hypoglycemia.
Findings:
- Genetic screening revealed the same HNF4A mutation in the proband, his father, and elder sister.
- The mutation was confirmed as a paternal de novo mutation, demonstrating autosomal dominant inheritance.
- The family's pedigree illustrated a wide spectrum of glucose dysregulation, from neonatal hypoglycemia to adult-onset diabetes.
Implications:
- This study highlights the biphasic potential of HNF4A mutations, causing both hypoglycemia and hyperglycemia.
- Early-onset paternal diabetes should raise suspicion for HNF4A mutations in infants with diazoxide-responsive hyperinsulinemic hypoglycemia.
- Molecular testing is crucial for diagnosing genetic forms of neonatal hypoglycemia, even without maternal diabetes or macrosomia.
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