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Published on: February 16, 2015
Sall2 is required for proapoptotic Noxa expression and genotoxic stress-induced apoptosis by doxorubicin
D Escobar1, M I Hepp1, C Farkas1
1Departamento de Bioquímica y Biología Molecular, Facultad de Ciencias Biológicas, Universidad de Concepción, Concepción, Chile.
Abstract:
The Sall2 transcription factor is deregulated in several cancers; however, little is known about its cellular functions, including its target genes. Recently, we demonstrated that p53 directly regulates Sall2 expression under genotoxic stress. Here, we investigated the role of Sall2 in the context of cellular response to genotoxic stress. In addition, we further examined the Sall2-p53 relationship during genotoxic stress in primary mouse embryo fibroblasts (MEFs), which are derived from Sall2 knockout mice separately, or in combination with the p53ERTAM knock-in mice. We found that the levels of Sall2 mRNA and protein are dynamically modulated in response to doxorubicin. At early times of stress, Sall2 is downregulated, but increases under extension of the stress in a p53-independent manner. Based on caspase-3/7 activities, expression of cleaved poly (ADP-ribose) polymerase, expression of cleaved caspase-3 and induction of proapoptotic proteins, Sall2 expression was correlated with cellular apoptosis. Consequently, Sall2-/- MEFs have decreased apoptosis, which relates with increased cell viability in response to doxorubicin. Importantly, Sall2 was required for apoptosis even in the presence of fully activated p53. Searching for putative Sall2 targets that could mediate its role in apoptosis, we identified proapoptotic NOXA/PMAIP1 (phorbol-12-myristate-13-acetate-induced protein 1). We demonstrated that Sall2 positively regulates Noxa promoter activity. Conserved putative Sall2-binding sites at the NOXA promoter were validated in vitro by electrophoretic mobility shift assay and in vivo by ChIP experiments, identifying NOXA as a novel Sall2 target. In agreement, induction of Noxa protein and mRNA in response to doxorubicin was significantly decreased in Sall2-/- MEFs. In addition, studies in leukemia Jurkat T cells support the existence of the Sall2/Noxa axis, and the significance of this axis on the apoptotic response to doxorubicin in cancer cells. Our study highlights the relevance of Sall2 in the apoptotic response to extended genotoxic stress, which is important for understanding its role in normal physiology and disease.
Insights
The Sall2 transcription factor promotes apoptosis during genotoxic stress by upregulating the proapoptotic gene NOXA. Sall2 is crucial for cancer cell death, even when p53 is active.
Area of Science:
- Molecular Biology
- Cancer Research
- Cellular Stress Response
Background:
- The transcription factor Sall2's cellular functions and target genes are largely unknown, despite its deregulation in various cancers.
- Previous research indicated that p53 directly regulates Sall2 expression under genotoxic stress.
Purpose of the Study:
- To investigate the role of Sall2 in the cellular response to genotoxic stress.
- To further examine the Sall2-p53 relationship during genotoxic stress.
- To identify Sall2 target genes involved in apoptosis.
Main Methods:
- Utilized Sall2 knockout (Sall2-/-) and p53ERTAM knock-in primary mouse embryo fibroblasts (MEFs).
- Assessed apoptosis markers (caspase-3/7 activity, cleaved PARP, cleaved caspase-3, proapoptotic proteins) following doxorubicin treatment.
- Investigated Sall2's transcriptional regulation of NOXA using promoter activity assays, electrophoretic mobility shift assays (EMSA), and chromatin immunoprecipitation (ChIP).
Main Results:
- Sall2 expression is dynamically modulated by doxorubicin, initially downregulated then upregulated in a p53-independent manner.
- Sall2 expression correlates with cellular apoptosis; Sall2-/- MEFs exhibit reduced apoptosis and increased cell viability.
- Identified NOXA as a novel Sall2 target gene, with Sall2 directly regulating NOXA promoter activity and its induction post-doxorubicin treatment.
Conclusions:
- Sall2 plays a critical role in promoting apoptosis during extended genotoxic stress, independent of p53.
- The Sall2/NOXA axis is significant for the apoptotic response to genotoxic stress in cancer cells.
- Understanding Sall2's function in apoptosis is crucial for its role in normal physiology and disease, particularly in cancer.
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