Rare inherited bone marrow failure syndromes with cancer predisposition associated with SRP72, SH2B3, MYSM1 and CBL variants: a literature review and case series
Aug 2026· Pediatric Hematology/Oncology and Immunopathology· 0 citations· 16 references
TL;DR
The findings highlight the importance of early molecular genetic testing in children with persistent hematopoietic abnormalities, along with regular cytogenetic surveillance and timely referral of high-risk patients for HSCT.
Abstract
Introduction. Inherited bone marrow failure syndromes (IBMFS) comprise a heterogeneous group of hereditary disorders characterized by impaired hematopoiesis and an increased risk of myelodysplastic syndrome, acute myeloid leukemia, and other malignancies. Rare forms of IBMFS present a particular clinical challenge because they may manifest as isolated cytopenia, a myeloproliferative phenotype, or a syndromic disorder with early clonal evolution.
Materials and methods. We analyzed five male patients with rare inherited bone marrow failure syndromes. All the patients had undergone comprehensive molecular genetic testing. Clinical manifestations, molecular genetic and cytogenetic findings, indications for allogeneic hematopoietic stem cell transplantation (HSCT), and treatment outcomes were evaluated.
Results. Variants in SRP72 were identified in 2 patients, SH2B3 in 1 patient, MYSM1 in 1 patient, and combined CBL and STAG2 alterations also in 1 patient. The age at disease onset ranged from the first months of life to 9 years (median – 61 months), whereas the median age at diagnosis verification was 10 years, indicating a substantial diagnostic delay. The most unfavorable disease course was observed in the patient with MYSM1 deficiency who had developed monosomy 7, del(5q) and myelodysplastic syndrome with subsequent transformation to acute myeloid leukemia, and ultimately died of disease progression. HSCT was performed in two patients with SRP72 variants, with one patient still alive and the other one deceased.
Conclusion. Our findings highlight the importance of early molecular genetic testing in children with persistent hematopoietic abnormalities, along with regular cytogenetic surveillance and timely referral of high-risk patients for HSCT.
Introduction: Myelodysplastic syndrome with fibrosis (MDS-F) is a rare and biologically aggressive subtype of myelodysplastic syndrome associated with severe cytopenias, poor prognosis, and increased risk of progression to acute myeloid leukemia. The coexistence of TP53 mutation further confers adverse disease biology,...
Mayank Pandey, T. Dolai, Kaustav Ghosh· Documenta Haematologica· 0 citations
Introduction. Inherited bone marrow failure syndromes (IBMFS) caused by germline pathogenic variants in hematopoietic genes are associated with a high risk of developing myelodysplastic syndrome (MDS) and acute myeloid leukemia. Allogeneic hematopoietic stem cell transplantation (allo-HSCT) remains the only curative tr...
M. S. Vasilyeva, A. Maschan, E. Raykina et al.· Pediatric Hematology/Oncolog...· 0 citations
Germline predisposition syndromes are increasingly recognized in young patients presenting with myelodysplastic syndromes (MDS) and bone marrow failure. Among these, GATA2 deficiency represents a well-established cause of hereditary susceptibility to myeloid malignancies, whereas constitutional STAG2 alterations are ra...
Onda-Tabita Călugăru, D. Coriu, C. Jardan et al.· Frontiers in Medicine· 0 citations
ERCC6L2 disease (ED) is an inherited bone marrow failure (BMF) syndrome that progresses almost exclusively to erythroid, TP53-mutated myeloid malignancy, but the somatic evolution underlying the progression in patients is unknown. We characterized the genetic landscape of 29 ED patients with longitudinal sampling, inte...
S. Douglas, I. Kaaja, I. Ikonen et al.· medRxiv· 0 citations
It is demonstrated that SLF2 and SMC5 dysfunction drives premature HSC aging, bone marrow failure, and predisposition to MDS, revealing Atelis Syndrome as a previously unrecognized IBMFS.
Sho Shibata, K. Chonabayashi, Hirofumi Nakamura et al.· Leukemia· 1 citation
Hereditary genetic syndromes are a significant risk factor for development of oncohematological diseases in childhood. Specifically, Down syndrome is associated with a 500-fold increased risk of acute megakaryoblastic leukemia and a 20-fold increased risk of acute lymphoblastic leukemia compared to the general populati...
V. D. Artemova, T. Valiev· MD-Onco· 0 citations
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