Heterozygous RFX6 protein truncating variants are associated with MODY with reduced penetrance.
Kashyap A PatelJarno L T KettunenMarkku LaaksoAlena Stančáková YaluriThomas W LaverKevin ColcloughMatthew B JohnsonMarc AbramowiczLeif GroopPäivi J MiettinenMaggie H ShepherdSarah E FlanaganSian EllardNobuya InagakiAndrew T HattersleyTiinamaija TuomiMiriam CnopMichael N WeedonPublished in: Nature communications (2017)
Finding new causes of monogenic diabetes helps understand glycaemic regulation in humans. To find novel genetic causes of maturity-onset diabetes of the young (MODY), we sequenced MODY cases with unknown aetiology and compared variant frequencies to large public databases. From 36 European patients, we identify two probands with novel RFX6 heterozygous nonsense variants. RFX6 protein truncating variants are enriched in the MODY discovery cohort compared to the European control population within ExAC (odds ratio = 131, P = 1 × 10-4). We find similar results in non-Finnish European (n = 348, odds ratio = 43, P = 5 × 10-5) and Finnish (n = 80, odds ratio = 22, P = 1 × 10-6) replication cohorts. RFX6 heterozygotes have reduced penetrance of diabetes compared to common HNF1A and HNF4A-MODY mutations (27, 70 and 55% at 25 years of age, respectively). The hyperglycaemia results from beta-cell dysfunction and is associated with lower fasting and stimulated gastric inhibitory polypeptide (GIP) levels. Our study demonstrates that heterozygous RFX6 protein truncating variants are associated with MODY with reduced penetrance.Maturity-onset diabetes of the young (MODY) is the most common subtype of familial diabetes. Here, Patel et al. use targeted DNA sequencing of MODY patients and large-scale publically available data to show that RFX6 heterozygous protein truncating variants cause reduced penetrance MODY.
Keyphrases
- type diabetes
- copy number
- cardiovascular disease
- end stage renal disease
- glycemic control
- early onset
- ejection fraction
- chronic kidney disease
- newly diagnosed
- prognostic factors
- single cell
- healthcare
- protein protein
- peritoneal dialysis
- oxidative stress
- binding protein
- stem cells
- machine learning
- metabolic syndrome
- emergency department
- amino acid
- blood glucose
- high throughput
- genome wide
- blood pressure
- patient reported outcomes
- immune response
- middle aged
- single molecule
- mental health
- electronic health record
- cell therapy
- deep learning
- cancer therapy
- data analysis
- weight loss
- circulating tumor cells