Attenuated Expression of SLCO2A1 Caused by DNA Methylation in Pediatric Inflammatory Bowel Disease

Author:

Ito Natsuki12,Kudo Takahiro1ORCID,Eguchi Hidetaka2,Jimbo Keisuke1,Furuhata Atsushi3,Okuno Toshiaki4ORCID,Takeuchi Ichiro5,Arai Katsuhiro5,Ishige Takashi6,Okazaki Yasushi2,Shimizu Toshiaki1

Affiliation:

1. Department of Pediatrics and Adolescent Medicine, Juntendo University Graduate School of Medicine , Tokyo , Japan

2. Diagnostics and Therapeutics of Intractable Diseases and Intractable Disease Research Center, Juntendo University Graduate School of Medicine , Tokyo , Japan

3. Biomedical Research Center, Juntendo University Graduate School of Medicine , Tokyo , Japan

4. Department of Biochemistry, Juntendo University Graduate School of Medicine , Tokyo , Japan

5. Center for Pediatric Inflammatory Bowel Disease, Division of Gastroenterology, National Center for Child Health and Development , Tokyo , Japan

6. Department of Pediatrics, Gunma University Graduate School of Medicine , Gunma , Japan

Abstract

Abstract Background SLCO2A1 encodes a prostaglandin (PG) transporter, and autosomal recessive pathogenic variants of this gene cause chronic enteropathy associated with SLCO2A1. It is unclear whether a heterozygous pathogenic variant of SLCO2A1 has a role in the pathogenesis of other types of inflammatory bowel disease (IBD). In this study, we investigated the possible involvement of a local epigenetic alteration in SLCO2A1 in patients with a heterozygous pathogenic variant. Methods We conducted whole-exome sequencing of samples from 2 sisters with suspected monogenic IBD. In addition, we performed bisulfite sequencing using DNA extracted from their small and large intestine samples to explore epigenetic alterations. Results A heterozygous splicing site variant, SLCO2A1:c.940 + 1G > A, was detected in both patients. To explore the possible involvement of epigenetic alterations, we analyzed protein and messenger RNA expression of SLCO2A1, and observed attenuated SLCO2A1 expression in the inflamed lesions of these patients compared with that in the control individuals. Furthermore, bisulfite sequencing indicated dense methylation in the promoter region of SLCO2A1 only in the inflamed lesions of both patients. The urinary PG metabolite levels in these patients were comparable to those in patients with chronic enteropathy associated with SLCO2A1 and higher than those in the control individuals. We found considerably higher levels of the metabolites in patient 1, who showed more severe symptoms than patient 2. Conclusions Local DNA methylation attenuated SLCO2A1 expression, which may evoke local inflammation of the mucosa by the unincorporated PG. These findings may improve our understanding of the epigenetic mechanisms underlying IBD development.

Funder

Juntendo University

National Center for Child Health and Development

Japanese Ministry of Health, Labour, and Welfare

Publisher

Oxford University Press (OUP)

Subject

Gastroenterology,Immunology and Allergy

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