Back to Search Start Over

Clinical evolution, genetic landscape and trajectories of clonal hematopoiesis in SAMD9/SAMD9L syndromes.

Authors :
Sahoo SS
Pastor VB
Goodings C
Voss RK
Kozyra EJ
Szvetnik A
Noellke P
Dworzak M
Starý J
Locatelli F
Masetti R
Schmugge M
De Moerloose B
Catala A
Kállay K
Turkiewicz D
Hasle H
Buechner J
Jahnukainen K
Ussowicz M
Polychronopoulou S
Smith OP
Fabri O
Barzilai S
de Haas V
Baumann I
Schwarz-Furlan S
Niewisch MR
Sauer MG
Burkhardt B
Lang P
Bader P
Beier R
Müller I
Albert MH
Meisel R
Schulz A
Cario G
Panda PK
Wehrle J
Hirabayashi S
Derecka M
Durruthy-Durruthy R
Göhring G
Yoshimi-Noellke A
Ku M
Lebrecht D
Erlacher M
Flotho C
Strahm B
Niemeyer CM
Wlodarski MW
Source :
Nature medicine [Nat Med] 2021 Oct; Vol. 27 (10), pp. 1806-1817. Date of Electronic Publication: 2021 Oct 07.
Publication Year :
2021

Abstract

Germline SAMD9 and SAMD9L mutations (SAMD9/9L <superscript>mut</superscript> ) predispose to myelodysplastic syndromes (MDS) with propensity for somatic rescue. In this study, we investigated a clinically annotated pediatric MDS cohort (n = 669) to define the prevalence, genetic landscape, phenotype, therapy outcome and clonal architecture of SAMD9/9L syndromes. In consecutively diagnosed MDS, germline SAMD9/9L <superscript>mut</superscript> accounted for 8% and were mutually exclusive with GATA2 mutations present in 7% of the cohort. Among SAMD9/9L <superscript>mut</superscript> cases, refractory cytopenia was the most prevalent MDS subtype (90%); acquired monosomy 7 was present in 38%; constitutional abnormalities were noted in 57%; and immune dysfunction was present in 28%. The clinical outcome was independent of germline mutations. In total, 67 patients had 58 distinct germline SAMD9/9L <superscript>mut</superscript> clustering to protein middle regions. Despite inconclusive in silico prediction, 94% of SAMD9/9L <superscript>mut</superscript> suppressed HEK293 cell growth, and mutations expressed in CD34 <superscript>+</superscript>  cells induced overt cell death. Furthermore, we found that 61% of SAMD9/9L <superscript>mut</superscript> patients underwent somatic genetic rescue (SGR) resulting in clonal hematopoiesis, of which 95% was maladaptive (monosomy 7 ± cancer mutations), and 51% had adaptive nature (revertant UPD7q, somatic SAMD9/9L <superscript>mut</superscript> ). Finally, bone marrow single-cell DNA sequencing revealed multiple competing SGR events in individual patients. Our findings demonstrate that SGR is common in SAMD9/9L <superscript>mut</superscript> MDS and exemplify the exceptional plasticity of hematopoiesis in children.<br /> (© 2021. The Author(s), under exclusive licence to Springer Nature America, Inc.)

Details

Language :
English
ISSN :
1546-170X
Volume :
27
Issue :
10
Database :
MEDLINE
Journal :
Nature medicine
Publication Type :
Academic Journal
Accession number :
34621053
Full Text :
https://doi.org/10.1038/s41591-021-01511-6