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Molecular mechanism of HNF-1A-mediated HNF4A gene regulation and promoter-driven HNF4A-MODY diabetes
L. Kind, J. Molnes, E. Tjora, A. Raasakka, M. Myllykoski, K. Colclough, C. Saint-Martin, C. Adelfalk, P. Dusatkova, S. Pruhova, C. Valtonen-André, C. Bellanné-Chantelot, T. Arnesen, P. Kursula, PR. Njølstad
Jazyk angličtina Země Spojené státy americké
Typ dokumentu časopisecké články
NLK
Directory of Open Access Journals
od 2020
PubMed Central
od 2016
Europe PubMed Central
od 2016
ROAD: Directory of Open Access Scholarly Resources
od 2016
- MeSH
- diabetes mellitus 2. typu * genetika metabolismus MeSH
- hepatocytární jaderný faktor 1-alfa * genetika metabolismus MeSH
- hepatocytární jaderný faktor 4 * genetika metabolismus MeSH
- krystalografie rentgenová MeSH
- lidé MeSH
- promotorové oblasti (genetika) * genetika MeSH
- regulace genové exprese MeSH
- vazba proteinů MeSH
- vazebná místa MeSH
- Check Tag
- lidé MeSH
- mužské pohlaví MeSH
- ženské pohlaví MeSH
- Publikační typ
- časopisecké články MeSH
Monogenic diabetes is a gateway to precision medicine through molecular mechanistic insight. Hepatocyte nuclear factor 1A (HNF-1A) and HNF-4A are transcription factors that engage in crossregulatory gene transcription networks to maintain glucose-stimulated insulin secretion in pancreatic β cells. Variants in the HNF1A and HNF4A genes are associated with maturity-onset diabetes of the young (MODY). Here, we explored 4 variants in the P2-HNF4A promoter region: 3 in the HNF-1A binding site and 1 close to the site, which were identified in 63 individuals from 21 families of different MODY disease registries across Europe. Our goal was to study the disease causality for these variants and to investigate diabetes mechanisms on the molecular level. We solved a crystal structure of HNF-1A bound to the P2-HNF4A promoter and established a set of techniques to probe HNF-1A binding and transcriptional activity toward different promoter variants. We used isothermal titration calorimetry, biolayer interferometry, x-ray crystallography, and transactivation assays, which revealed changes in HNF-1A binding or transcriptional activities for all 4 P2-HNF4A variants. Our results suggest distinct disease mechanisms of the promoter variants, which can be correlated with clinical phenotype, such as age of diagnosis of diabetes, and be important tools for clinical utility in precision medicine.
Clinical Chemistry and Pharmacology University Hospital Skåne Lund Sweden
Clinical Genetics Pathology and Molecular Diagnostics University Hospital Skåne Lund Sweden
Department of Medical Genetics and
Department of Pediatrics and Adolescent Medicine Haukeland University Hospital Bergen Norway
Department of Surgery Haukeland University Hospital Bergen Norway
Exeter Genomics Laboratory Royal Devon and Exeter NHS Foundation Trust Exeter United Kingdom
Faculty of Biochemistry and Molecular Medicine and Biocenter Oulu University of Oulu Oulu Finland
Monogenic Diabetes Study Group of the Société Francophone du Diabète Paris France
Citace poskytuje Crossref.org
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