WFS1 Gene–associated Diabetes Phenotypes and Identification of a Founder Mutation in Southern India

Author:

Chapla Aaron1ORCID,Johnson Jabasteen1ORCID,Korula Sophy1,Mohan Nisha2,Ahmed Anish2,Varghese Deny1,Rangasamy Parthiban1,Ravichandran Lavanya1,Jebasingh Felix1,Kumar Agrawal Krishna3,Somasundaram Noel4,Hesarghatta Shyamasunder Asha1,Mathai Sarah1,Simon Anna1,Jha Sujeet5,Chowdry Subhankar6,Venkatesan Radha7,Raghupathy Palany8,Thomas Nihal1ORCID

Affiliation:

1. Christian Medical College Vellore, India

2. Moulana Hospital, Mallapuram, India

3. BP Koirala Institute of Health Sciences, Nepal

4. The National Hospital of Srilanka, Colombo, Srilanka

5. Max Super Speciality Hospital, New Delhi, India

6. Institute of Post-Graduate Medical Education and Research, Kolkotta, India

7. Madras Diabetes Research Foundation, Chennai, India

8. Sagar Hospitals, Bengaluru, India

Abstract

Abstract Context Wolfram syndrome (WFS) is a rare autosomal recessive disorder characterized by juvenile-onset diabetes, diabetes insipidus, optic atrophy, deafness, and progressive neurodegeneration. However, due to the progressive nature of the disease and a lack of complete clinical manifestations, a confirmed diagnosis of WFS at the time of onset of diabetes is a challenge. Objective With WFS1 rare heterozygous variants reported in diabetes, there is a need for comprehensive genetic screening strategies for the early diagnosis of WFS and delineating the phenotypic spectrum associated with the WFS1 gene variants in young-onset diabetes. Methods This case series of 11 patients who were positive for WFS1 variants were identified with next-generation sequencing (NGS)–based screening of 17 genemonogenic diabetes panel. These results were further confirmed with Sanger sequencing. Results 9 out of 11 patients were homozygous for pathogenic/likely pathogenic variants in the WFS1 gene. Interestingly, 3 of these probands were positive for the novel WFS1 (NM_006005.3): c.1107_1108insA (p.Ala370Serfs*173) variant, and haplotype analysis suggested a founder effect in 3 families from Southern India. Additionally, we identified 2 patients with young-onset diabetes who were heterozygous for a likely pathogenic variant or a variant of uncertain significance in the WFS1 gene. Conclusion These results project the need for NGS-based parallel multigene testing as a tool for early diagnosis of WFS and identify heterozygous WFS1 variants implicated in young-onset diabetes.

Funder

Institutional Review Board of the Christian Medical College

Department of Biotechnology, Government of India

Publisher

The Endocrine Society

Subject

Biochemistry (medical),Clinical Biochemistry,Endocrinology,Biochemistry,Endocrinology, Diabetes and Metabolism

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