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Updated: Mar 24, 2026

Induction and Validation of Cellular Senescence in Primary Human Cells
Published on: June 20, 2018
BAF180 regulates cellular senescence and hematopoietic stem cell homeostasis through p21
Hyemin Lee1, Fangyan Dai1, Li Zhuang1
1Department of Experimental Radiation Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Abstract:
BAF180 (also called PBRM1), a subunit of the SWI/SNF complex, plays critical roles in the regulation of chromatin remodeling and gene transcription, and is frequently mutated in several human cancers. However, the role of mammalian BAF180 in tumor suppression and tissue maintenance in vivo remains largely unknown. Here, using a conditional somatic knockout approach, we explored the cellular and organismal functions of BAF180 in mouse. BAF180 deletion in primary mouse embryonic fibroblasts (MEFs) triggers profound cell cycle arrest, premature cellular senescence, without affecting DNA damage response or chromosomal integrity. While somatic deletion of BAF180 in adult mice does not provoke tumor development, BAF180 deficient mice exhibit defects in hematopoietic system characterized by progressive reduction of hematopoietic stem cells (HSCs), defective long-term repopulating potential, and hematopoietic lineage developmental aberrations. BAF180 deletion results in elevated p21 expression in both MEFs and HSCs. Mechanistically, we showed that BAF180 binds to p21 promoter, and BAF180 deletion enhances the binding of modified histones associated with transcriptional activation on p21 promoter. Deletion of p21 rescues cell cycle arrest and premature senescence in BAF180 deficient MEFs, and partially rescues hematopoietic defects in BAF180 deficient mice. Together, our study identifies BAF180 as a critical regulator of cellular senescence and HSC homeostasis, which is at least partially regulated through BAF180-mediated suppression of p21 expression. Our results also suggest that senescence triggered by BAF180 inactivation may serve as a failsafe mechanism to restrain BAF180 deficiency-associated tumor development, providing a conceptual framework to further understand BAF180 function in tumor biology.
Insights
BAF180 (BRM/PBRM1) is crucial for cell cycle control and hematopoietic stem cell (HSC) maintenance. Its loss causes senescence and HSC defects, partly via p21 regulation, acting as a tumor suppressor mechanism.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Biology
Background:
- BAF180 (BRM/PBRM1), a SWI/SNF complex subunit, is vital for chromatin remodeling and gene transcription.
- Frequent mutations in BAF180 suggest a role in human cancers, but its in vivo function in tumor suppression and tissue maintenance is unclear.
Purpose of the Study:
- To investigate the in vivo cellular and organismal functions of BAF180 in mice.
- To elucidate the role of BAF180 in tumor suppression and tissue homeostasis.
Main Methods:
- Conditional somatic knockout of BAF180 in mouse embryonic fibroblasts (MEFs) and adult mice.
- Analysis of cell cycle, senescence, DNA damage response, and chromosomal integrity.
- Assessment of hematopoietic system defects, including stem cell function and lineage development.
- Investigation of p21 expression and its regulation by BAF180.
Main Results:
- BAF180 deletion in MEFs induced cell cycle arrest and senescence without affecting DNA damage or chromosomal integrity.
- BAF180-deficient mice showed hematopoietic system defects, including reduced hematopoietic stem cells (HSCs) and impaired repopulating potential.
- BAF180 loss elevated p21 expression by enhancing histone modifications on the p21 promoter.
- p21 deletion rescued senescence in MEFs and partially rescued hematopoietic defects in mice.
Conclusions:
- BAF180 is a critical regulator of cellular senescence and HSC homeostasis, partly through suppressing p21 expression.
- BAF180 deficiency-induced senescence may act as a failsafe mechanism against tumor development.
- This study provides insights into BAF180's function in tumor biology and tissue maintenance.
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