The transcription factor Bcl11a is essential for B-1a cell maintenance during aging.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 40608674.
- Also identified by DOI 10.1073/pnas.2501974122 and PMC identifier 12260582.
- Licence recorded as CC BY-NC-ND.
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Abstract
B-1a cells, a self-renewing B cell subset essential for innate immunity, produce natural IgM antibodies that defend against pathogens, yet mechanisms sustaining their maintenance during aging remain unclear. We report that aging B-1a cells exhibit hallmarks of decline, including DNA damage, apoptosis, and reduced proliferation, with striking sex-specific disparities: aged females retain higher B-1a cell numbers than males, correlating with enhanced glycolysis and chromatin accessibility. Motif analysis of accessible regions identified the transcription factor Bcl11a, which shows elevated chromatin accessibility and expression in aged female B-1a cells but declines in males. <i>Bcl11a</i> deletion reduced B-1a cell numbers, impaired viability, and increased apoptosis across sexes and ages. Mechanistically, Bcl11a sustains survival by upregulating antiapoptotic genes (<i>Mcl1</i>, <i>Mdm2</i>, and <i>Mdm4</i>) to suppress p53-mediated apoptosis, as evidenced by partial rescue of viability defects in Bcl11a-deficient B-1a cells upon <i>p53</i> deletion. Conversely, Bcl11a overexpression or Bcl11a-high B-1a cells from aged <i>Bcl11a</i>-eGFP reporter mice enhanced stress resistance. These findings establish Bcl11a as a key regulator of B-1a cell maintenance during aging and reveal its role in mitigating sex-dimorphic immune decline through transcriptional control of survival pathways.
Medical subject headings
- Aging
- B-Lymphocyte Subsets
- Nuclear Proteins
- Carrier Proteins