A MinION-based Long-Read Sequencing Application With One-Step PCR for the Genetic Diagnosis of 21-Hydroxylase Deficiency

Author:

Adachi Eriko1ORCID,Nakagawa Ryuichi1,Tsuji-Hosokawa Atsumi12ORCID,Gau Maki1ORCID,Kirino Shizuka1,Yogi Analia1,Nakatani Hisae1ORCID,Takasawa Kei1ORCID,Yamaguchi Tomomi345,Kosho Tomoki3456ORCID,Murakami Masanori7ORCID,Tajima Toshihiro8,Hasegawa Tomonobu9,Yamada Tetsuya7,Morio Tomohiro1ORCID,Ohara Osamu10ORCID,Kashimada Kenichi1ORCID

Affiliation:

1. Department of Pediatrics and Developmental Biology, Tokyo Medical and Dental University (TMDU) , Tokyo 113-8519 , Japan

2. Department of Systems BioMedicine, National Research Institute for Child Health and Development , Tokyo 157-8535 , Japan

3. Center for Medical Genetics, Shinshu University Hospital , Nagano 390-8621 , Japan

4. Department of Medical Genetics, Shinshu University School of Medicine , Nagano 390-8621 , Japan

5. Division of Clinical Sequencing, Shinshu University School of Medicine , Nagano 390-8621 , Japan

6. Research Center for Supports to Advanced Science, Shinshu University , Nagano 390-8621 , Japan

7. Department of Molecular Endocrinology and Metabolism, Tokyo Medical and Dental University (TMDU) , Tokyo 113-8519 , Japan

8. Department of Pediatrics, Jichi Medical University , Tochigi 329-0498 , Japan

9. Department of Pediatrics, Keio University, School of Medicine , Tokyo 160-8582 , Japan

10. Department of Applied Genomics, Kazusa DNA Research Institute , Chiba 292-0818 , Japan

Abstract

Abstract Context Recently developed long-read sequencing (LRS) technology has been considered an option for CYP21A2 analysis. However, the clinical use of LRS for CYP21A2 analysis is limited. Objective This study's objective is to develop an efficient and low-cost LRS system for CYP21A2 screening. Methods A DNA fragment library was prepared in a single polymerase chain reaction (PCR) that covers the entire CYP21A2 gene and all known junctions caused by TNXB gene structural rearrangements, yielding a single 8-kb product of CYP21A2 or CYP21A1P/CYP21A2 chimera. After barcoding, the PCR products were sequenced on a MinION-based platform with Flongle Flow Cell R9.4.1 and R10.4.1. Results The reference genotypes of 55 patients with 21-hydroxylase deficiency (21OHD) were established using the conventional method with multiplex ligation-dependent probe amplification (MLPA) and nested PCR. LRS using Flongle Flow Cell R9.4.1 yielded consistent results. Additionally, the recently updated LRS “duplex” analysis with Flongle flow cell R10.4.1 was tested to reveal an advantage of accurately sequencing a variant located on the homopolymer region. By introducing a barcode system, the cost was reduced to be comparable to that of conventional analysis. A novel single-nucleotide variation was discovered at the acceptor site of intron 7, c.940-1G > C. We also identified a subtype of the classical chimeric junction CH2, “CH2a,” in the region from the latter part of intron 5 to exon 6. Conclusion We successfully established a novel low-cost and highly accurate LRS system for 21OHD genetic analysis. Our study provides insight into the feasibility of LRS for diagnosing 21OHD and other genetic diseases caused by structural rearrangements.

Funder

Ministry of Health, Labour and Welfare of Japan

Japan Agency for Medical Research and Development

Publisher

The Endocrine Society

Subject

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

Reference49 articles.

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