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Synonymous GATA2 mutations result in selective loss of mutated RNA and are common in patients with GATA2 deficiency

Authors :
Kozyra, E.
Pastor, V.
Lefkopoulos, S.
Sahoo, S.
Busch, H.
Voss, R.
Erlacher, M.
Lebrecht, D.
Szvetnik, E.
Hirabayashi, S.
Pasaulienė, R.
Pedace, L.
Tartaglia, M.
Klemann, C.
Metzger, P.
Boerries, M.
Catala, A.
Hasle, H.
de Haas, V.
Kállay, K.
Masetti, R.
Moerloose, B.
Dworzak, M.
Schmugge, M.
Smith, O.
Starý, J.
Mejstrikova, E.
Ussowicz, M.
Morris, E.
Singh, P.
Collin, M.
Dereka, M.
Göhring, G.
Flotho, C.
Strahm, B.
Locatelli, F.
Niemeyer, C.
Trompouki, E.
Wlodarski, M.
EWOG-MDS, W.
Source :
Leukemia, r-FSJD: Repositorio Institucional de Producción Científica de la Fundació Sant Joan de Déu, Fundació Sant Joan de Déu, r-FSJD. Repositorio Institucional de Producción Científica de la Fundació Sant Joan de Déu, instname, Leukemia : the Journal of Normal and Malignant Hemopoiese ; Official Journal of the Leukemia Research Fund U.K.
Publication Year :
2020
Publisher :
NATURE PUBLISHING GROUP, 2020.

Abstract

Deficiency of the transcription factor GATA2 is a highly penetrant genetic disorder predisposing to myelodysplastic syndromes (MDS) and immunodeficiency. It has been recognized as the most common cause underlying primary MDS in children. Triggered by the discovery of a recurrent synonymous GATA2 variant, we systematically investigated 911 patients with phenotype of pediatric MDS or cellular deficiencies for the presence of synonymous alterations in GATA2. In total, we identified nine individuals with five heterozygous synonymous mutations: c.351C>G, p.T117T (N = 4); c.649C>T, p.L217L; c.981G>A, p.G327G; c.1023C>T, p.A341A; and c.1416G>A, p.P472P (N = 2). They accounted for 8.2% (9/110) of cases with GATA2 deficiency in our cohort and resulted in selective loss of mutant RNA. While for the hotspot mutation (c.351C>G) a splicing error leading to RNA and protein reduction was identified, severe, likely late stage RNA loss without splicing disruption was found for other mutations. Finally, the synonymous mutations did not alter protein function or stability. In summary, synonymous GATA2 substitutions are a new common cause of GATA2 deficiency. These findings have broad implications for genetic counseling and pathogenic variant discovery in Mendelian disorders.

Details

ISSN :
08876924
Database :
OpenAIRE
Journal :
Leukemia, r-FSJD: Repositorio Institucional de Producción Científica de la Fundació Sant Joan de Déu, Fundació Sant Joan de Déu, r-FSJD. Repositorio Institucional de Producción Científica de la Fundació Sant Joan de Déu, instname, Leukemia : the Journal of Normal and Malignant Hemopoiese ; Official Journal of the Leukemia Research Fund U.K.
Accession number :
edsair.dedup.wf.001..0a04e40f859a2e52892db3018fc57eff