Literature DB >> 31586946

Optimised molecular genetic diagnostics of Fanconi anaemia by whole exome sequencing and functional studies.

Massimo Bogliolo1, Roser Pujol2, Miriam Aza-Carmona3, Núria Muñoz-Subirana2, Benjamin Rodriguez-Santiago4, José Antonio Casado5, Paula Rio5, Christopher Bauser6, Judith Reina-Castillón7, Marcos Lopez-Sanchez7, Lidia Gonzalez-Quereda8, Pia Gallano8, Albert Catalá9, Ana Ruiz-Llobet10, Isabel Badell11, Cristina Diaz-Heredia12, Raquel Hladun13, Leonort Senent14, Bienvenida Argiles15, Juan Miguel Bergua Burgues16, Fatima Bañez16, Beatriz Arrizabalaga17, Ricardo López Almaraz17, Monica Lopez18, Ángela Figuera19, Antonio Molinés20, Inmaculada Pérez de Soto21, Inés Hernando22, Juan Antonio Muñoz23, Maria Del Rosario Marin23, Judith Balmaña24, Neda Stjepanovic25,26, Estela Carrasco27, Isabel Cuesta28, José Miguel Cosuelo29, Alexandra Regueiro29, José Moraleda Jimenez30, Ana Maria Galera-Miñarro31, Laura Rosiñol32, Anna Carrió32, Cristina Beléndez-Bieler33, Antonio Escudero Soto33, Elena Cela33, Gregorio de la Mata34, Rafael Fernández-Delgado35, Maria Carmen Garcia-Pardos36, Raquel Sáez-Villaverde37, Marta Barragaño38, Raquel Portugal34, Francisco Lendinez39, Ines Hernadez40, José Manue Vagace41, Maria Tapia42, José Nieto43, Marta Garcia44, Macarena Gonzalez45, Cristina Vicho45, Eva Galvez46, Alberto Valiente47, Maria Luisa Antelo47, Phil Ancliff48, Francisco Garcia49, Joaquin Dopazo50, Julian Sevilla46, Tobias Paprotka6, Luis Alberto Pérez-Jurado51, Juan Bueren5, Jordi Surralles8.   

Abstract

PURPOSE: Patients with Fanconi anaemia (FA), a rare DNA repair genetic disease, exhibit chromosome fragility, bone marrow failure, malformations and cancer susceptibility. FA molecular diagnosis is challenging since FA is caused by point mutations and large deletions in 22 genes following three heritability patterns. To optimise FA patients' characterisation, we developed a simplified but effective methodology based on whole exome sequencing (WES) and functional studies.
METHODS: 68 patients with FA were analysed by commercial WES services. Copy number variations were evaluated by sequencing data analysis with RStudio. To test FANCA missense variants, wt FANCA cDNA was cloned and variants were introduced by site-directed mutagenesis. Vectors were then tested for their ability to complement DNA repair defects of a FANCA-KO human cell line generated by TALEN technologies.
RESULTS: We identified 93.3% of mutated alleles including large deletions. We determined the pathogenicity of three FANCA missense variants and demonstrated that two FANCA variants reported in mutations databases as 'affecting functions' are SNPs. Deep analysis of sequencing data revealed patients' true mutations, highlighting the importance of functional analysis. In one patient, no pathogenic variant could be identified in any of the 22 known FA genes, and in seven patients, only one deleterious variant could be identified (three patients each with FANCA and FANCD2 and one patient with FANCE mutations)
CONCLUSION: WES and proper bioinformatics analysis are sufficient to effectively characterise patients with FA regardless of the rarity of their complementation group, type of mutations, mosaic condition and DNA source. © Author(s) (or their employer(s)) 2020. No commercial re-use. See rights and permissions. Published by BMJ.

Entities:  

Keywords:  clinical genetics; genetics; haematology (incl blood transfusion)

Mesh:

Substances:

Year:  2019        PMID: 31586946     DOI: 10.1136/jmedgenet-2019-106249

Source DB:  PubMed          Journal:  J Med Genet        ISSN: 0022-2593            Impact factor:   6.318


  3 in total

1.  Concerns regarding the potentially causal role of FANCA heterozygous variants in human primary ovarian insufficiency.

Authors:  Abdelkader Heddar; Micheline Misrahi
Journal:  Hum Genet       Date:  2020-11-05       Impact factor: 4.132

2.  Next-generation sequencing reveals novel variants and large deletion in FANCA gene in Polish family with Fanconi anemia.

Authors:  Anna Repczynska; Katarzyna Julga; Jolanta Skalska-Sadowska; Magdalena M Kacprzak; Alicja Bartoszewska-Kubiak; Ewelina Lazarczyk; Damian Loska; Malgorzata Drozniewska; Kamila Czerska; Jacek Wachowiak; Olga Haus
Journal:  Orphanet J Rare Dis       Date:  2022-07-19       Impact factor: 4.303

3.  Suppression of non-homologous end joining does not rescue DNA repair defects in Fanconi anemia patient cells.

Authors:  Supawat Thongthip; Brooke A Conti; Francis P Lach; Agata Smogorzewska
Journal:  Cell Cycle       Date:  2020-08-30       Impact factor: 4.534

  3 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.