BRG1/SMARCA4 inactivation promotes non-small cell lung cancer aggressiveness by altering chromatin organization
Tess Orvis1, Austin Hepperla1,2, Vonn Walter1
1Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina , USA.
Abstract:
SWI/SNF chromatin remodeling complexes regulate critical cellular processes, including cell-cycle control, programmed cell death, differentiation, genomic instability, and DNA repair. Inactivation of this class of chromatin remodeling complex has been associated with a variety of malignancies, including lung, ovarian, renal, liver, and pediatric cancers. In particular, approximately 10% of primary human lung non-small cell lung cancers (NSCLC) display attenuations in the BRG1 ATPase, a core factor in SWI/SNF complexes. To evaluate the role of BRG1 attenuation in NSCLC development, we examined the effect of BRG1 silencing in primary and established human NSCLC cells. BRG1 loss altered cellular morphology and increased tumorigenic potential. Gene expression analyses showed reduced expression of genes known to be associated with progression of human NSCLC. We demonstrated that BRG1 losses in NSCLC cells were associated with variations in chromatin structure, including differences in nucleosome positioning and occupancy surrounding transcriptional start sites of disease-relevant genes. Our results offer direct evidence that BRG1 attenuation contributes to NSCLC aggressiveness by altering nucleosome positioning at a wide range of genes, including key cancer-associated genes.
Insights
BRG1 loss in non-small cell lung cancer (NSCLC) cells alters chromatin structure, increasing tumor aggressiveness. This study shows BRG1 attenuation contributes to NSCLC by affecting gene expression and nucleosome positioning.
Area of Science:
- Molecular Biology
- Cancer Research
- Epigenetics
Background:
- SWI/SNF chromatin remodeling complexes are crucial for cellular processes and are implicated in various cancers.
- BRG1 ATPase, a core SWI/SNF component, is attenuated in approximately 10% of human non-small cell lung cancers (NSCLC).
Purpose of the Study:
- To investigate the functional role of BRG1 attenuation in the development and progression of NSCLC.
- To elucidate the molecular mechanisms by which BRG1 loss impacts NSCLC aggressiveness.
Main Methods:
- BRG1 was silenced in human NSCLC cell lines (primary and established).
- Cellular morphology, tumorigenic potential, and gene expression were analyzed.
- Chromatin structure, including nucleosome positioning and occupancy, was assessed.
Main Results:
- BRG1 loss resulted in altered cellular morphology and increased tumorigenic potential in NSCLC cells.
- Gene expression analysis revealed reduced expression of key NSCLC progression-associated genes.
- BRG1 deficiency correlated with changes in chromatin structure around transcriptional start sites of disease-relevant genes.
Conclusions:
- BRG1 attenuation significantly contributes to NSCLC aggressiveness.
- Altered nucleosome positioning and occupancy due to BRG1 loss impact key cancer-associated genes, driving NSCLC progression.
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