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Mutation analysis and characterisation of F9 gene in haemophilia-B population of India

BACKGROUND: Hemophilia B (HB) is an X-linked bleeding disorder resulting from coagulation factor IX defects. Over 3,000 pathogenic, HB-associated mutations in the F9 gene have been identified. We aimed to investigate the role of F9 variants in 150 HB patients using sequencing technology. METHODS: F9...

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Autores principales: Kulkarni, Sujayendra, Hegde, Rajat, Hegde, Smita, Kulkarni, Suyamindra S., Hanagvadi, Suresh, Das, Kusal K., Kolagi, Sanjeev, Gai, Pramod B., Bulagouda, Rudragouda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society of Hematology; Korean Society of Blood and Marrow Transplantation; Korean Society of Pediatric Hematology-Oncology; Korean Society on Thrombosis and Hemostasis 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8721457/
https://www.ncbi.nlm.nih.gov/pubmed/34880139
http://dx.doi.org/10.5045/br.2021.2021016
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author Kulkarni, Sujayendra
Hegde, Rajat
Hegde, Smita
Kulkarni, Suyamindra S.
Hanagvadi, Suresh
Das, Kusal K.
Kolagi, Sanjeev
Gai, Pramod B.
Bulagouda, Rudragouda
author_facet Kulkarni, Sujayendra
Hegde, Rajat
Hegde, Smita
Kulkarni, Suyamindra S.
Hanagvadi, Suresh
Das, Kusal K.
Kolagi, Sanjeev
Gai, Pramod B.
Bulagouda, Rudragouda
author_sort Kulkarni, Sujayendra
collection PubMed
description BACKGROUND: Hemophilia B (HB) is an X-linked bleeding disorder resulting from coagulation factor IX defects. Over 3,000 pathogenic, HB-associated mutations in the F9 gene have been identified. We aimed to investigate the role of F9 variants in 150 HB patients using sequencing technology. METHODS: F9 gene sequences were amplified from peripheral blood-derived DNA and sequenced on an Applied Biosystems (ABI) 3500 Sanger sequencing platform. Functional and structural predictions of mutant FIX were analyzed. RESULTS: Among 150 HB patients, 102 (68%), 30 (20%), and 18 (12%) suffered from severe, moderate, and mild HB, respectively. Genetic analysis identified 16 mutations, including 3 novel mutations. Nine mutations (7 missense and 2 stop-gain) were found to be pathogenic. Only 3 mutations (c.127C>T, c.470G>A, and c.1070G>A) were associated with different severities. While 2 mutations were associated with mild HB cases (c.304C>T and c.580A>G), 2 (c.195G>A and c.1385A>G) and 3 mutations (c.223C>T, c.1187G>A, and c.1232G>A) resulted in moderate and severe disease, respectively. Additionally, 1 mutation each was associated with mild-moderate (c.*1110A>G) and mild-severe HB disease (c.197A>T), 4 mutations were associated with moderate-severe HB cases (c.314A>G, c.198A>T, c.676C>T, and c.1094C>A). FIX concentrations were lower in the mutated group (5.5±2.5% vs. 8.0±2.5%). Novel p.E66D and p.S365 mutations were predicted to be pathogenic based on changes in FIX structure and function. CONCLUSION: Novel single nucleotide polymorphisms (SNPs) largely contributed to the pathogenesis of HB. Our study strongly suggests that population-based genetic screening will be particularly helpful to identify risk prediction and carrier detection tools for Indian HB patients.
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spelling pubmed-87214572022-01-11 Mutation analysis and characterisation of F9 gene in haemophilia-B population of India Kulkarni, Sujayendra Hegde, Rajat Hegde, Smita Kulkarni, Suyamindra S. Hanagvadi, Suresh Das, Kusal K. Kolagi, Sanjeev Gai, Pramod B. Bulagouda, Rudragouda Blood Res Original Article BACKGROUND: Hemophilia B (HB) is an X-linked bleeding disorder resulting from coagulation factor IX defects. Over 3,000 pathogenic, HB-associated mutations in the F9 gene have been identified. We aimed to investigate the role of F9 variants in 150 HB patients using sequencing technology. METHODS: F9 gene sequences were amplified from peripheral blood-derived DNA and sequenced on an Applied Biosystems (ABI) 3500 Sanger sequencing platform. Functional and structural predictions of mutant FIX were analyzed. RESULTS: Among 150 HB patients, 102 (68%), 30 (20%), and 18 (12%) suffered from severe, moderate, and mild HB, respectively. Genetic analysis identified 16 mutations, including 3 novel mutations. Nine mutations (7 missense and 2 stop-gain) were found to be pathogenic. Only 3 mutations (c.127C>T, c.470G>A, and c.1070G>A) were associated with different severities. While 2 mutations were associated with mild HB cases (c.304C>T and c.580A>G), 2 (c.195G>A and c.1385A>G) and 3 mutations (c.223C>T, c.1187G>A, and c.1232G>A) resulted in moderate and severe disease, respectively. Additionally, 1 mutation each was associated with mild-moderate (c.*1110A>G) and mild-severe HB disease (c.197A>T), 4 mutations were associated with moderate-severe HB cases (c.314A>G, c.198A>T, c.676C>T, and c.1094C>A). FIX concentrations were lower in the mutated group (5.5±2.5% vs. 8.0±2.5%). Novel p.E66D and p.S365 mutations were predicted to be pathogenic based on changes in FIX structure and function. CONCLUSION: Novel single nucleotide polymorphisms (SNPs) largely contributed to the pathogenesis of HB. Our study strongly suggests that population-based genetic screening will be particularly helpful to identify risk prediction and carrier detection tools for Indian HB patients. Korean Society of Hematology; Korean Society of Blood and Marrow Transplantation; Korean Society of Pediatric Hematology-Oncology; Korean Society on Thrombosis and Hemostasis 2021-12-31 2021-12-31 /pmc/articles/PMC8721457/ /pubmed/34880139 http://dx.doi.org/10.5045/br.2021.2021016 Text en © 2021 Korean Society of Hematology https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0 (https://creativecommons.org/licenses/by-nc/4.0/) ) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Kulkarni, Sujayendra
Hegde, Rajat
Hegde, Smita
Kulkarni, Suyamindra S.
Hanagvadi, Suresh
Das, Kusal K.
Kolagi, Sanjeev
Gai, Pramod B.
Bulagouda, Rudragouda
Mutation analysis and characterisation of F9 gene in haemophilia-B population of India
title Mutation analysis and characterisation of F9 gene in haemophilia-B population of India
title_full Mutation analysis and characterisation of F9 gene in haemophilia-B population of India
title_fullStr Mutation analysis and characterisation of F9 gene in haemophilia-B population of India
title_full_unstemmed Mutation analysis and characterisation of F9 gene in haemophilia-B population of India
title_short Mutation analysis and characterisation of F9 gene in haemophilia-B population of India
title_sort mutation analysis and characterisation of f9 gene in haemophilia-b population of india
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8721457/
https://www.ncbi.nlm.nih.gov/pubmed/34880139
http://dx.doi.org/10.5045/br.2021.2021016
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