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Please use this identifier to cite or link to this item: http://hdl.handle.net/10564/4474

Title: Genetic analysis using long-read sequencing to overcome the difficulties in VWF gene
Other Titles: VWF遺伝子解析の困難性を克服するロングリードシーケンシング法の構築
Authors: Ye, Sheng
Eura, Yuka
Matsumoto, Masanori
Kokame, Koichi
Keywords: von Willebrand factor
von Willebrand disease
nanopore sequencing
polymerase chain reaction
Issue Date: May-2025
Publisher: Elsevier
Citation: Research and practice in thrombosis and haemostasis. 2025 May, vol.9, no.4, aritcle no.102888
Abstract: Background: Genetic defects in von Willebrand factor (VWF) can lead to von Willebrand disease (VWD). Identifying causative or modifier variants of VWF is crucial for the diagnosis, classification, and clinical management of VWF disorders. However, owing to the length (178 kb) and complexity of VWF and the presence of the pseu dogene VWFP1, Sanger sequencing or short-read next-generation sequencing is often challenging. Objectives: This study aimed to establish a long-read sequencing method using Oxford nanopore technology (ONT) to overcome difficulties associated with VWF gene analysis. Methods: Genetic analyses were established using genomic DNA from a healthy donor and validated using 3 VWF disorder patient samples. Long-range ( 15 kb) polymerase chain reaction was optimized to obtain 21 amplicons covering the entire VWF gene, avoiding unwanted amplification due to repetitive sequences and VWFP1. ONT nanopore sequencing data were analyzed using software programs, including Clair3, Long shot, and Sniffles. The identified candidate variants were verified by several approaches such as Sanger sequencing and haplotyping. Results: The entire VWF gene was successfully read using ONT nanopore sequencing, with > 200 variants called in each patient sample. A rare missense variant,p.(Gln2442His) and a rare 2599 bp deletion were identified in patients 2 and 3,respectively. However, the deletion was confirmed as long-range polymerase chain reaction artifacts, which warrant attention when using this method. Conclusion: This study presents an optimal solution using ONT nanopore sequencing to identify variants in VWF, which may improve the diagnosis of VWF disorders.
Description: © 2025 The Author(s). Published by Elsevier Inc. on behalf of International Society on Thrombosis and Haemostasis. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
URI: http://hdl.handle.net/10564/4474
ISSN: 2475-0379
DOI: https://doi.org/10.1016/j.rpth.2025.102888
Academic Degrees and number: 24601甲第977号
Degree-granting date: 2025-09-25
Degree name: 博士(医学)
Degree-granting institutions: 奈良県立医科大学
Appears in Collections:2025年度

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