Abstract Background Germline mutations in the RUNX1 transcription factor give rise to a rare autosomal dominant genetic condition classified under the entity: Familial Platelet Disorders with predisposition to Acute Myeloid Leukaemia (FPD/AML). While several studies have identified a myriad of germline RUNX1 mutations implicated in this disorder, second-hit mutational events are necessary for patients with hereditary thrombocytopenia to develop full-blown AML. The molecular picture behind this process remains unclear. We describe a patient of Malay descent with an unreported 7-bp germline RUNX1 frameshift deletion, who developed second-hit mutations that could have brought about the leukaemic transformation from a pre-leukaemic state. These...
Familial platelet disorder with propensity to acute myelogenous leukemia, or FPD/AML (OMIM #601399),...
Familial platelet disorder with propensity to acute myelogenous leukemia, or FPD/AML (OMIM #601399),...
Recognition that germline mutations can predispose individuals to blood cancers, often presenting as...
International audienceFamilial platelet disorder with predisposition to acute myeloid leukaemia (FPD...
Familial platelet disorder with propensity to myeloid malignancy (FPD/AML) is a rare autosomal domin...
First reported in 1999, germline runt-related transcription factor 1 (RUNX1) mutations are a well-es...
Familial platelet disorder with predisposition to acute myelogenous leukemia (FPD/AML) is an autosom...
Somatic RUNX1 mutations are found in approximately 10% of patients with de novo acute myeloid leukem...
<p>Familial platelet disorder with propensity to develop acute myeloid leukemia (FPD/AML) is a rare ...
The mechanisms by which patients with RUNX1 familial platelet disorder with propensity to myeloid ma...
International audienceLess than 50 patients with FPD/AML (OMIM 601309) have been reported as of toda...
Acute myeloid leukemia (AML) is characterized by a great cytogenetic and molecular genetic diversity...
In this review, we discuss disease-causing alterations of RUNT-related transcription factor 1 (RUNX1...
Pathogenic loss-of-function RUNX1 germline variants cause autosomal dominantly-inherited familial pl...
Familial platelet disorder with propensity to acute myelogenous leukemia, or FPD/AML (OMIM #601399),...
Familial platelet disorder with propensity to acute myelogenous leukemia, or FPD/AML (OMIM #601399),...
Familial platelet disorder with propensity to acute myelogenous leukemia, or FPD/AML (OMIM #601399),...
Recognition that germline mutations can predispose individuals to blood cancers, often presenting as...
International audienceFamilial platelet disorder with predisposition to acute myeloid leukaemia (FPD...
Familial platelet disorder with propensity to myeloid malignancy (FPD/AML) is a rare autosomal domin...
First reported in 1999, germline runt-related transcription factor 1 (RUNX1) mutations are a well-es...
Familial platelet disorder with predisposition to acute myelogenous leukemia (FPD/AML) is an autosom...
Somatic RUNX1 mutations are found in approximately 10% of patients with de novo acute myeloid leukem...
<p>Familial platelet disorder with propensity to develop acute myeloid leukemia (FPD/AML) is a rare ...
The mechanisms by which patients with RUNX1 familial platelet disorder with propensity to myeloid ma...
International audienceLess than 50 patients with FPD/AML (OMIM 601309) have been reported as of toda...
Acute myeloid leukemia (AML) is characterized by a great cytogenetic and molecular genetic diversity...
In this review, we discuss disease-causing alterations of RUNT-related transcription factor 1 (RUNX1...
Pathogenic loss-of-function RUNX1 germline variants cause autosomal dominantly-inherited familial pl...
Familial platelet disorder with propensity to acute myelogenous leukemia, or FPD/AML (OMIM #601399),...
Familial platelet disorder with propensity to acute myelogenous leukemia, or FPD/AML (OMIM #601399),...
Familial platelet disorder with propensity to acute myelogenous leukemia, or FPD/AML (OMIM #601399),...
Recognition that germline mutations can predispose individuals to blood cancers, often presenting as...