Delineation of the genetic and clinical spectrum, including candidate genes, of monogenic diabetes: a multicenter study in South Korea

Author:

Cheon Chong Kun1ORCID,Lee Yeoun Joo1,Yoo Sukdong1,Lee Jung Hee2,Lee Jeong Eun3,Kim Hyun Ji4,Choi Im Jeong5,Choi Yeonsong6,Lee Semin6,Yoon Ju Young1

Affiliation:

1. Department of Pediatrics , Pusan National University Children’s Hospital, Pusan National University School of Medicine , Yangsan , Korea

2. Department of Pathology , Pusan National University School of Medicine, Pusan National University Yangsan Hospital , Yangsan , Korea

3. Department of Pediatrics , Inje University Busan Paik Hospital , Busan , Korea

4. Department of Pediatrics , Ilsin Christian Hospital , Busan , Korea

5. Mirae Children’s Hospital , Busan , Korea

6. Department of Biomedical Engineering , School of Life Sciences, Ulsan National Institute of Science and Technology , Ulsan , Korea

Abstract

Abstract Objectives Monogenic diabetes includes a group of heterogeneous diabetes types. We aimed to identify the frequency, clinical and molecular features of monogenic diabetes in a Korean pediatric cohort. Methods A retrospective cohort and multicenter study of Korean children suspected to have monogenic diabetes, managed by four pediatric endocrine centers in the southeast region of South Korea, from February 2016 to February 2020. We recruited 27 pediatric Korean patients suspected to have monogenic diabetes who had at least two of the following three criteria (age at diagnosis, family history, and clinical presentation). Targeted exome sequencing was conducted in these patients. The functional consequences of the variants were predicted by bioinformatics and protein structure analysis. Results Molecular genetic analysis identified 16 patients (59.3%) with monogenic diabetes. We identified a total of eight unique variants, including five novel variants (HNF4A c.1088C>T, CEL c.1627C>T and c.1421C>T, PAX4 c.538+8G>C, INS c.71C>T). We also identified two potential candidate gene variants for monogenic diabetes, namely c.650T>C in the SLC2A2 gene and c.629G>A in the PTF1A gene. Other variants were identified in the WFS1and NPHP3 genes in two rare genetic disorders. Variant-positive individuals had a lower presence of autoantibody positivity at the time of diagnosis and higher glycosylated hemoglobin levels at last follow-up when compared to variant-negative patients (p<0.001 and p=0.029, respectively). Conclusions These results further expand the spectrum of known variants as well as potential candidate gene variants associated with monogenic diabetes in Korea.

Funder

Pusan National University

Publisher

Walter de Gruyter GmbH

Subject

Endocrinology,Endocrinology, Diabetes and Metabolism,Pediatrics, Perinatology, and Child Health

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