An Activating Mutation in STAT3 Results in Neonatal Diabetes Through Reduced Insulin Synthesis

Author:

Velayos Teresa1,Martínez Rosa1,Alonso Milagros2,Garcia-Etxebarria Koldo3,Aguayo Anibal1,Camarero Cristina2,Urrutia Inés1,Martínez de LaPiscina Idoia1,Barrio Raquel2,Santin Izortze1ORCID,Castaño Luis1

Affiliation:

1. Endocrinology and Diabetes Research Group, Hospital Universitario Cruces, BioCruces Health Research Institute, CIBERDEM, CIBERER, UPV-EHU, Barakaldo, Spain

2. Pediatrics Endocrinology, Ramon y Cajal University Hospital, Madrid, Spain

3. Immunogenetics Research Laboratory, Department of Genetics, Physical Anthropology and Animal Physiology, BioCruces Health Research Institute, UPV-EHU, Leioa, Spain

Abstract

Neonatal diabetes mellitus (NDM) is a rare form of diabetes diagnosed within the first 6 months of life. Genetic studies have allowed the identification of several genes linked to the development of NDM; however, genetic causes for ∼20% of the cases remain to be clarified. Most cases of NDM involve isolated diabetes, but sometimes NDM appears in association with other pathological conditions, including autoimmune diseases. Recent reports have linked activating mutations in STAT3 with early-onset autoimmune disorders that include diabetes of autoimmune origin, but the functional impact of STAT3-activating mutations have not been characterized at the pancreatic β-cell level. By using whole-exome sequencing, we identified a novel missense mutation in the binding domain of the STAT3 protein in a patient with NDM. The functional analyses showed that the mutation results in an aberrant activation of STAT3, leading to deleterious downstream effects in pancreatic β-cells. The identified mutation leads to hyperinhibition of the transcription factor Isl-1 and, consequently, to a decrease in insulin expression. These findings represent the first functional indication of a direct link between an NDM-linked activating mutation in STAT3 and pancreatic β-cell dysfunction.

Funder

Instituto de Salud Carlos III

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

Reference29 articles.

1. Breakthroughs in monogenic diabetes genetics: from pediatric forms to young adulthood diabetes;Vaxillaire;Pediatr Endocrinol Rev,2009

2. Clinical implications of a molecular genetic classification of monogenic β-cell diabetes;Murphy;Nat Clin Pract Endocrinol Metab,2008

3. Genetics and pathophysiology of neonatal diabetes mellitus;Naylor;J Diabetes Investig,2011

4. Neonatal diabetes mellitus: a disease linked to multiple mechanisms;Polak;Orphanet J Rare Dis,2007

5. The immune dysregulation, polyendocrinopathy, enteropathy, X-linked syndrome (IPEX) is caused by mutations of FOXP3;Bennett;Nat Genet,2001

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