» Articles » PMID: 31638168

Whole‑exome Sequencing in Russian Children with Non‑type 1 Diabetes Mellitus Reveals a Wide Spectrum of Genetic Variants in MODY‑related and Unrelated Genes

Abstract

The present study reports on the frequency and the spectrum of genetic variants causative of monogenic diabetes in Russian children with non‑type 1 diabetes mellitus. The present study included 60 unrelated Russian children with non‑type 1 diabetes mellitus diagnosed before the age of 18 years. Genetic variants were screened using whole‑exome sequencing (WES) in a panel of 35 genes causative of maturity onset diabetes of the young (MODY) and transient or permanent neonatal diabetes. Verification of the WES results was performed using PCR‑direct sequencing. A total of 38 genetic variants were identified in 33 out of 60 patients (55%). The majority of patients (27/33, 81.8%) had variants in MODY‑related genes: GCK (n=19), HNF1A (n=2), PAX4 (n=1), ABCC8 (n=1), KCNJ11 (n=1), GCK+HNF1A (n=1), GCK+BLK (n=1) and GCK+BLK+WFS1 (n=1). A total of 6 patients (6/33, 18.2%) had variants in MODY‑unrelated genes: GATA6 (n=1), WFS1 (n=3), EIF2AK3 (n=1) and SLC19A2 (n=1). A total of 15 out of 38 variants were novel, including GCK, HNF1A, BLK, WFS1, EIF2AK3 and SLC19A2. To summarize, the present study demonstrates a high frequency and a wide spectrum of genetic variants causative of monogenic diabetes in Russian children with non‑type 1 diabetes mellitus. The spectrum includes previously known and novel variants in MODY‑related and unrelated genes, with multiple variants in a number of patients. The prevalence of GCK variants indicates that diagnostics of monogenic diabetes in Russian children may begin with testing for MODY2. However, the remaining variants are present at low frequencies in 9 different genes, altogether amounting to ~50% of the cases and highlighting the efficiency of using WES in non‑GCK‑MODY cases.

Citing Articles

Genetic Structure of Hereditary Forms of Diabetes Mellitus in Russia.

Minniakhmetov I, Khusainova R, Laptev D, Yalaev B, Karpova Y, Deev R Int J Mol Sci. 2025; 26(2).

PMID: 39859454 PMC: 11766241. DOI: 10.3390/ijms26020740.


The Identification of a Novel Pathogenic Variant in the GATA6 Gene in a Child with Neonatal Diabetes.

Sechko E, Koltakova M, Khusainova R, Minniakhmetov I, Laptev D Int J Mol Sci. 2024; 25(22).

PMID: 39596087 PMC: 11593795. DOI: 10.3390/ijms252211998.


Expanding the Russian allele frequency reference via cross-laboratory data integration: insights from 7452 exome samples.

Barbitoff Y, Khmelkova D, Pomerantseva E, Slepchenkov A, Zubashenko N, Mironova I Natl Sci Rev. 2024; 11(10):nwae326.

PMID: 39498263 PMC: 11533896. DOI: 10.1093/nsr/nwae326.


Coinheritance of HNF1A and glucokinase variants in maturity-onset diabetes of the young.

Watanabe D, Yagasaki H, Narusawa H, Inukai T Endocrinol Diabetes Metab Case Rep. 2024; 2024(3).

PMID: 39089324 PMC: 11301554. DOI: 10.1530/EDM-23-0100.


Identification of rare variants in candidate genes associated with monogenic diabetes in polish mody-x patients.

Jakiel P, Gadzalska K, Juscinska E, Gorzadek M, Ploszaj T, Skoczylas S J Diabetes Metab Disord. 2024; 23(1):545-554.

PMID: 38932873 PMC: 11196495. DOI: 10.1007/s40200-023-01312-3.


References
1.
Lopez-Garrido M, Herranz-Antolin S, Alija-Merillas M, Giralt P, Escribano J . Co-inheritance of HNF1a and GCK mutations in a family with maturity-onset diabetes of the young (MODY): implications for genetic testing. Clin Endocrinol (Oxf). 2012; 79(3):342-7. DOI: 10.1111/cen.12050. View

2.
Flanagan S, Patch A, Mackay D, Edghill E, Gloyn A, Robinson D . Mutations in ATP-sensitive K+ channel genes cause transient neonatal diabetes and permanent diabetes in childhood or adulthood. Diabetes. 2007; 56(7):1930-7. PMC: 7611811. DOI: 10.2337/db07-0043. View

3.
Liu X, Jian X, Boerwinkle E . dbNSFP v2.0: a database of human non-synonymous SNVs and their functional predictions and annotations. Hum Mutat. 2013; 34(9):E2393-402. PMC: 4109890. DOI: 10.1002/humu.22376. View

4.
Bennett K, James C, Mutair A, Al-Shaikh H, Sinani A, Hussain K . Four novel cases of permanent neonatal diabetes mellitus caused by homozygous mutations in the glucokinase gene. Pediatr Diabetes. 2011; 12(3 Pt 1):192-6. DOI: 10.1111/j.1399-5448.2010.00683.x. View

5.
Hattersley A, Turner R, Permutt M, Patel P, Tanizawa Y, Chiu K . Linkage of type 2 diabetes to the glucokinase gene. Lancet. 1992; 339(8805):1307-10. DOI: 10.1016/0140-6736(92)91958-b. View