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Identification of deep intronic individual variants in patients with hemophilia A by next‐generation sequencing of the whole factor VIII gene

ESSENTIALS: Intronic variants of the factor VIII gene (F8) causing hemophilia A have been reported. We established an analysis method for whole F8 and investigated the variants within its introns. Rare variants located within introns of F8 in patients with hemophilia A are not uncommon. The c.6429+1...

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Autores principales: Inaba, Hiroshi, Shinozawa, Keiko, Amano, Kagehiro, Fukutake, Katsuyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6058261/
https://www.ncbi.nlm.nih.gov/pubmed/30046696
http://dx.doi.org/10.1002/rth2.12031
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author Inaba, Hiroshi
Shinozawa, Keiko
Amano, Kagehiro
Fukutake, Katsuyuki
author_facet Inaba, Hiroshi
Shinozawa, Keiko
Amano, Kagehiro
Fukutake, Katsuyuki
author_sort Inaba, Hiroshi
collection PubMed
description ESSENTIALS: Intronic variants of the factor VIII gene (F8) causing hemophilia A have been reported. We established an analysis method for whole F8 and investigated the variants within its introns. Rare variants located within introns of F8 in patients with hemophilia A are not uncommon. The c.6429+14194T>C variant was characteristically detected in patients with inversion. BACKGROUND: No genetic defects are found in the coagulation factor VIII gene (F8) of approximately 2% of patients with hemophilia A. Recently, genomic variants causative of hemophilia A that were located deep within introns have been reported. OBJECTIVES: We aimed to establish a comprehensive method of analysis of F8 using next‐generation sequencing (NGS) and investigate the variants located deep within the introns of F8. PATIENTS/METHODS: Forty‐five male patients with hemophilia A, including 31 with previously identified causative mutations, were investigated. RESULTS: Our NGS analysis allowed for the identification of genetic variants in roughly 99% of F8. We confirmed that our NGS analysis can detect the single nucleotide variants and small deletions with high accuracy. After filtering, a total of 27 rare and unique individual variants from 16 patients remained. Three of these variants, c.144‐10810T>C, c.1010‐365A>G, and c.5219+9065A>G, were predicted as deleterious with high expected accuracy by PredictSNP2 analysis. We also predicted the impact on splicing by in silico analysis using three different algorithms. Two patients with unknown causative mutations carried unique individual variants, c.144‐10810T>C and c.6723+193G>A. We inferred that the c.144‐10810T>C variant likely causes hemophilia, while the effect of the c.6723+193G>A variant remains unclear. Our analysis showed that the c.6429+14194T>C variant was significantly detected in patients carrying the intron 22 inversion. CONCLUSIONS: Rare and unique individual variants located deep within the F8 introns in patients with hemophilia A are not uncommon. Future studies are necessary to determine the function and effect of these variants on F8 expression.
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spelling pubmed-60582612018-07-25 Identification of deep intronic individual variants in patients with hemophilia A by next‐generation sequencing of the whole factor VIII gene Inaba, Hiroshi Shinozawa, Keiko Amano, Kagehiro Fukutake, Katsuyuki Res Pract Thromb Haemost Original Articles: Haemostasis ESSENTIALS: Intronic variants of the factor VIII gene (F8) causing hemophilia A have been reported. We established an analysis method for whole F8 and investigated the variants within its introns. Rare variants located within introns of F8 in patients with hemophilia A are not uncommon. The c.6429+14194T>C variant was characteristically detected in patients with inversion. BACKGROUND: No genetic defects are found in the coagulation factor VIII gene (F8) of approximately 2% of patients with hemophilia A. Recently, genomic variants causative of hemophilia A that were located deep within introns have been reported. OBJECTIVES: We aimed to establish a comprehensive method of analysis of F8 using next‐generation sequencing (NGS) and investigate the variants located deep within the introns of F8. PATIENTS/METHODS: Forty‐five male patients with hemophilia A, including 31 with previously identified causative mutations, were investigated. RESULTS: Our NGS analysis allowed for the identification of genetic variants in roughly 99% of F8. We confirmed that our NGS analysis can detect the single nucleotide variants and small deletions with high accuracy. After filtering, a total of 27 rare and unique individual variants from 16 patients remained. Three of these variants, c.144‐10810T>C, c.1010‐365A>G, and c.5219+9065A>G, were predicted as deleterious with high expected accuracy by PredictSNP2 analysis. We also predicted the impact on splicing by in silico analysis using three different algorithms. Two patients with unknown causative mutations carried unique individual variants, c.144‐10810T>C and c.6723+193G>A. We inferred that the c.144‐10810T>C variant likely causes hemophilia, while the effect of the c.6723+193G>A variant remains unclear. Our analysis showed that the c.6429+14194T>C variant was significantly detected in patients carrying the intron 22 inversion. CONCLUSIONS: Rare and unique individual variants located deep within the F8 introns in patients with hemophilia A are not uncommon. Future studies are necessary to determine the function and effect of these variants on F8 expression. John Wiley and Sons Inc. 2017-08-05 /pmc/articles/PMC6058261/ /pubmed/30046696 http://dx.doi.org/10.1002/rth2.12031 Text en © 2017 The Authors. Research and Practice in Thrombosis and Haemostasis published by Wiley Periodicals, Inc on behalf of International Society on Thrombosis and Haemostasis. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles: Haemostasis
Inaba, Hiroshi
Shinozawa, Keiko
Amano, Kagehiro
Fukutake, Katsuyuki
Identification of deep intronic individual variants in patients with hemophilia A by next‐generation sequencing of the whole factor VIII gene
title Identification of deep intronic individual variants in patients with hemophilia A by next‐generation sequencing of the whole factor VIII gene
title_full Identification of deep intronic individual variants in patients with hemophilia A by next‐generation sequencing of the whole factor VIII gene
title_fullStr Identification of deep intronic individual variants in patients with hemophilia A by next‐generation sequencing of the whole factor VIII gene
title_full_unstemmed Identification of deep intronic individual variants in patients with hemophilia A by next‐generation sequencing of the whole factor VIII gene
title_short Identification of deep intronic individual variants in patients with hemophilia A by next‐generation sequencing of the whole factor VIII gene
title_sort identification of deep intronic individual variants in patients with hemophilia a by next‐generation sequencing of the whole factor viii gene
topic Original Articles: Haemostasis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6058261/
https://www.ncbi.nlm.nih.gov/pubmed/30046696
http://dx.doi.org/10.1002/rth2.12031
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