BCL11B predetermines a persister state in breast cancer that is reversed by TNFα.
Where this comes from
- Record sourced from PubMed, PMID 42715302.
- Also identified by DOI 10.1126/sciadv.aec5436.
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Abstract
The frequent development of chemoresistance in cancer presents a major clinical challenge, yet the underlying causes of heterogeneous drug responses remain largely elusive. Here, we systematically assessed the cellular differentiation status of human breast cancer cells using single-cell atlases and identified a distinct population of immature basal-like cancer cells marked by <i>BCL11B</i>. Notably, higher levels of <i>BCL11B</i><sup>+</sup> cancer cells are significantly associated with early relapse in patients with breast cancer who received chemotherapy. Functioning as a central regulator, B-cell lymphoma/leukemia 11B (BCL11B) delineates an immature cell state that preferentially transitions to a drug-resistant persister state during treatment through multiple preexisting and adaptive drug resistance programs. The cytokine tumor necrosis factor-α (TNFα) is revealed as a natural inhibitor of BCL11B and can directly reverse the emergence of chemoresistant persister cells. Therefore, we identify BCL11B as an unappreciated predeterminant of drug response and a therapeutic target for a subset of patients with breast cancer at high risk of developing chemoresistance.
Medical subject headings
- Breast Neoplasms
- Drug Resistance, Neoplasm
- Tumor Necrosis Factor-alpha
- Repressor Proteins
- Tumor Suppressor Proteins