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Molecular mechanism of HNF-1A–mediated HNF4A gene regulation and promoter-driven HNF4A-MODY diabetes
Laura Kind, … , Petri Kursula, Pål Rasmus Njølstad
Laura Kind, … , Petri Kursula, Pål Rasmus Njølstad
Published June 10, 2024
Citation Information: JCI Insight. 2024;9(11):e175278. https://doi.org/10.1172/jci.insight.175278.
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Research Article Metabolism

Molecular mechanism of HNF-1A–mediated HNF4A gene regulation and promoter-driven HNF4A-MODY diabetes

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Abstract

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.

Authors

Laura Kind, Janne Molnes, Erling Tjora, Arne Raasakka, Matti Myllykoski, Kevin Colclough, Cécile Saint-Martin, Caroline Adelfalk, Petra Dusatkova, Stepanka Pruhova, Camilla Valtonen-André, Christine Bellanné-Chantelot, Thomas Arnesen, Petri Kursula, Pål Rasmus Njølstad

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Figure 5

Thermodynamic and kinetic parameters of the DD-DBD:P2 WT and variant interactions.

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Thermodynamic and kinetic parameters of the DD-DBD:P2 WT and variant int...
(A) Thermodynamic analysis of the DD-DBD:P2 WT and variant interactions by ITC measurements. Measurements were done in technical triplicates (N = 3). (B) KD values extracted from ITC measurements in A. (C) BLI response curves for P2 WT (black), P2 -169C>T (green), P2 -181G>A (pink), and P2 -181G>T (yellow). (D) Observed rate constants (kobs), extracted from association reaction traces in BLI measurements. Data were fitted to a linear function f(x) = m x + n (solid line), for which m corresponds to the association rate (kon) noted in Table 4. (E) Dissociation rates (koff), extracted from dissociation reaction traces in BLI measurements. The average value across [DD-DBD] is represented as dotted line and corresponds to koff noted in Table 4. (C–E) Measurement series 1 is shown representatively. Coloring according to panel A. Significance levels used in unpaired 2-tailed t test with Welch’s correction: *: P < 0.05; **: P < 0.01.

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