BACH2-mediated FOS confers cytarabine resistance via stromal microenvironment alterations in pediatric ALL.
Ruidong ZhangRuidong ZhangXueling ZhengMing SunJia FanChunlian FangXin TianHuyong ZhengPublished in: Cancer science (2021)
Acute lymphoblastic leukemia (ALL) is an aggressive hematological cancer that mainly affects children. Relapse and chemoresistance result in treatment failure, underlining the need for improved therapies. BTB and CNC homology 2 (BACH2) is a lymphoid-specific transcription repressor recognized as a tumor suppressor in lymphomas, but little is known about its function and regulatory network in pediatric ALL (p-ALL). Herein, we found aberrant BACH2 expression at new diagnosis not only facilitated risk stratification of p-ALL but also served as a sensitive predictor of early treatment response and clinical outcome. Silencing BACH2 in ALL cells increased cell proliferation and accelerated cell cycle progression. BACH2 blockade also promoted cell adhesion to bone marrow stromal cells and conferred cytarabine (Ara-C)-resistant properties to leukemia cells by altering stromal microenvironment. Strikingly, we identified FOS, a transcriptional activator competing with BACH2, as a novel downstream target repressed by BACH2. Blocking FOS by chemical compounds enhanced the effect of Ara-C treatment in both primary p-ALL cells and pre-B-ALL-driven leukemia xenografts and prolonged the survival of tumor-bearing mice. These data highlight an interconnected network of BACH2-FOS, disruption of which could render current chemotherapies more effective and offer a promising therapeutic strategy to overcome Ara-C resistance in p-ALL.
Keyphrases
- bone marrow
- cell cycle
- induced apoptosis
- cell proliferation
- acute myeloid leukemia
- cell cycle arrest
- acute lymphoblastic leukemia
- mesenchymal stem cells
- cell adhesion
- endoplasmic reticulum stress
- poor prognosis
- cell death
- high dose
- immune response
- oxidative stress
- gene expression
- long non coding rna
- inflammatory response
- low dose
- electronic health record
- metabolic syndrome
- big data
- signaling pathway
- deep learning
- type diabetes
- data analysis
- nuclear factor
- free survival
- heat shock
- heat stress