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Mutations and variants of ONECUT1 in diabetes

Authors :
Eric Simon
Meike Hohwieler
Claire Dandine-Roulland
Stefan Liebau
Robert Olaso
Anett Illing
Bernhard Kuster
Xi Zhang
Maike Sander
Céline Besse
Ivan G. Costa
Jacqueline R. Benthuysen
Jean-François Deleuze
Martin Wagner
Johannes Krumm
Michael Schuster
Cécile Julier
Bernhard O. Boehm
Kyle J. Gaulton
Sandra Heller
Pierre Zalloua
Joshua Chiou
Gino Kwon
Valérie Senée
Gopika G. Nair
Allen Wang
Heike Neubauer
Qiong Lin
Alexander Kleger
Franz Oswald
Ryan J Geusz
Thomas Seufferlein
Anne Philippi
Thomas Klein
Marc Nicolino
Markus Breunig
Anne Degavre
Ronan Russell
Matthias Hebrok
Zhijian Li
Source :
Nat Med, Nature medicine, vol 27, iss 11
Publication Year :
2020

Abstract

Genes involved in distinct diabetes types suggest shared disease mechanisms. Here we show that One Cut Homeobox 1 (ONECUT1) mutations cause monogenic recessive syndromic diabetes in two unrelated patients, characterized by intrauterine growth retardation, pancreas hypoplasia and gallbladder agenesis/hypoplasia, and early-onset diabetes in heterozygous relatives. Heterozygous carriers of rare coding variants of ONECUT1 define a distinctive subgroup of diabetic patients with early-onset, nonautoimmune diabetes, who respond well to diabetes treatment. In addition, common regulatory ONECUT1 variants are associated with multifactorial type 2 diabetes. Directed differentiation of human pluripotent stem cells revealed that loss of ONECUT1 impairs pancreatic progenitor formation and a subsequent endocrine program. Loss of ONECUT1 altered transcription factor binding and enhancer activity and NKX2.2/NKX6.1 expression in pancreatic progenitor cells. Collectively, we demonstrate that ONECUT1 controls a transcriptional and epigenetic machinery regulating endocrine development, involved in a spectrum of diabetes, encompassing monogenic (recessive and dominant) as well as multifactorial inheritance. Our findings highlight the broad contribution of ONECUT1 in diabetes pathogenesis, marking an important step toward precision diabetes medicine.

Details

ISSN :
1546170X
Volume :
27
Issue :
11
Database :
OpenAIRE
Journal :
Nature medicine
Accession number :
edsair.doi.dedup.....7ae45f150475522de021682300ceebd0