6 research outputs found
Reduced SLIT2 is associated with increased cell proliferation and arsenic trioxide resistance in acute promyelocytic Leukemia
The SLIT-ROBO axis plays an important role in normal stem-cell biology, with possible
repercussions on cancer stem cell emergence. Although the Promyelocytic Leukemia (PML) protein
can regulate SLIT2 expression in the central nervous system, little is known about SLIT2 in acute
promyelocytic leukemia. Hence, we aimed to investigate the levels of SLIT2 in acute promyelocytic
leukemia (APL) and assess its biological activity in vitro and in vivo. Our analysis indicated that
blasts with SLIT2high transcript levels were associated with cell cycle arrest, while SLIT2low APL
blasts displayed a more stem-cell like phenotype. In a retrospective analysis using a cohort of
patients treated with all-trans retinoic acid (ATRA) and anthracyclines, high SLIT2 expression was
correlated with reduced leukocyte count (p = 0.024), and independently associated with improved
overall survival (hazard ratio: 0.94; 95% confidence interval: 0.92â0.97; p < 0.001). Functionally,
SLIT2-knockdown in primary APL blasts and cell lines led to increased cell proliferation and resistance
to arsenic trioxide induced apoptosis. Finally, in vivo transplant of Slit2-silenced primary APL blasts
promoted increased leukocyte count (p = 0.001) and decreased overall survival (p = 0.002) compared
with the control. In summary, our data highlight the tumor suppressive function of SLIT2 in APL and
its deteriorating effects on disease progression when downregulated
DNMT3A haploinsufficiency transforms FLT3ITD myeloproliferative disease into a rapid, spontaneous, and fully penetrant acute myeloid leukemia
Cytogenetically normal acute myeloid leukemia (CN-AML) represents nearly 50% of human AML. Co-occurring mutations in the de novo DNA methyltransferase DNMT3A and the FMS related tyrosine kinase 3 (FLT3) are common in CN-AML and confer a poorer prognosis. We demonstrate that mice with Flt3-internal tandem duplication (Flt3ITD) and inducible deletion of Dnmt3a spontaneously develop a rapidly lethal, completely penetrant, and transplantable AML of normal karyotype. AML cells retain a single Dnmt3afloxed allele, revealing the oncogenic potential of Dnmt3a haploinsufficiency.FLT3ITD/DNMT3A-mutant primary human and murine AML exhibit a similar pattern of global DNA methylation associated with changes in the expression of nearby genes. In the murine model, rescuing Dnmt3a expression was accompanied by DNA remethylation and loss of clonogenic potential, suggesting that Dnmt3a-mutant oncogenic effects are reversible. Dissection of the cellular architecture of the AML model using single-cell assays, including single-cell RNA sequencing, identified clonogenic subpopulations that express genes sensitive to the methylation of nearby genomic loci and responsive to DNMT3A levels. Thus, Dnmt3a haploinsufficiency transforms Flt3ITD myeloproliferative disease by modulating methylation-sensitive gene expression within a clonogenic AML subpopulation
High Înp73/TAp73 ratio is associated with poor prognosis in acute promyelocytic leukemia
The TP73 gene transcript is alternatively spliced and translated into the transcriptionally active (TAp73) or inactive (DNp73) isoforms, with opposite effects on the expression of p53 target genes and on apoptosis induction. The imbalance between DNp73 and TAp73 may contribute to tumorigenesis and resistance to chemotherapy in human cancers, including hematologic malignancies. In acute promyelocytic leukemia (APL), both isoforms are expressed, but their relevance in determining response to therapy and contribution to leukemogenesis remains unknown. Here, we provide the first evidence that a higher ÎNp73/TAp73 RNA expression ratio is associated with lower survival, lower disease-free survival, and higher risk of relapse in patients with APL homogeneously treated with all-trans retinoic acid and anthracycline-based chemotherapy, according to the International Consortium on Acute Promyelocytic Leukemia (IC-APL) study. Cox proportional hazards modeling showed that a high ÎNp73/TAp73 ratio was independently associated with shorter overall survival (hazard ratio, 4.47; 95% confidence interval, 1.64-12.2; P 5 .0035). Our data support the hypothesis that the ÎNp73/TAp73 ratio is an important determinant of clinical responsein APL and may offer a therapeutic target for enhancing chemosensitivity in blast cells
NTAL is associated with treatment outcome, cell proliferation and differentiation in acute promyelocytic leukemia
Non-T cell activation linker (NTAL) is a lipid raft-membrane protein expressed by normal and leukemic cells and involved in cell signaling. In acute promyelocytic leukemia (APL), NTAL depletion from lipid rafts decreases cell viability through regulation of the Akt/PI3K pathway. The role of NTAL in APL cell processes, and its association with clinical outcome, has not, however, been established. Here, we show that reduced levels of NTAL were associated with increased all-trans retinoic acid (ATRA)-induced differentiation, generation of reactive oxygen species, and mitochondrial dysfunction. Additionally, NTAL-knockdown (NTAL-KD) in APL cell lines led to activation of Ras, inhibition of Akt/mTOR pathways, and increased expression of autophagy markers, leading to an increased apoptosis rate following arsenic trioxide treatment. Furthermore, NTAL-KD in NB4 cells decreased the tumor burden in (NOD scid gamma) NSG mice, suggesting its implication in tumor growth. A retrospective analysis of NTAL expression in a cohort of patients treated with ATRA and anthracyclines, revealed that NTAL overexpression was associated w