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BUB1 regulates non-homologous end joining pathway to mediate radioresistance in triple-negative breast cancer.
Sriramulu, Sushmitha; Thoidingjam, Shivani; Chen, Wei-Min; Hassan, Oudai; Siddiqui, Farzan; Brown, Stephen L; Movsas, Benjamin; Green, Michael D; Davis, Anthony J; Speers, Corey; Walker, Eleanor; Nyati, Shyam.
Afiliação
  • Sriramulu S; Department of Radiation Oncology, Henry Ford Cancer Institute, Henry Ford Health, 1 Ford Place, Detroit, 5D-42, MI-48202, USA.
  • Thoidingjam S; Department of Radiation Oncology, Henry Ford Cancer Institute, Henry Ford Health, 1 Ford Place, Detroit, 5D-42, MI-48202, USA.
  • Chen WM; Department of Radiation Oncology, UT Southwestern Medical School, Dallas, TX-75390, USA.
  • Hassan O; Department of Surgical Pathology, Henry Ford Cancer Institute, Henry Ford Health, Detroit, MI-48202, USA.
  • Siddiqui F; Department of Radiation Oncology, Henry Ford Cancer Institute, Henry Ford Health, 1 Ford Place, Detroit, 5D-42, MI-48202, USA.
  • Brown SL; Henry Ford Health + Michigan State University Health Sciences, Detroit, MI-48202, USA.
  • Movsas B; Department of Radiology, Michigan State University, East Lansing, MI-48824, USA.
  • Green MD; Department of Radiation Oncology, Henry Ford Cancer Institute, Henry Ford Health, 1 Ford Place, Detroit, 5D-42, MI-48202, USA.
  • Davis AJ; Henry Ford Health + Michigan State University Health Sciences, Detroit, MI-48202, USA.
  • Speers C; Department of Radiology, Michigan State University, East Lansing, MI-48824, USA.
  • Walker E; Department of Radiation Oncology, Henry Ford Cancer Institute, Henry Ford Health, 1 Ford Place, Detroit, 5D-42, MI-48202, USA.
  • Nyati S; Henry Ford Health + Michigan State University Health Sciences, Detroit, MI-48202, USA.
J Exp Clin Cancer Res ; 43(1): 163, 2024 Jun 11.
Article em En | MEDLINE | ID: mdl-38863037
ABSTRACT

BACKGROUND:

Triple-negative breast cancer (TNBC) is a highly aggressive form of breast cancer subtype often treated with radiotherapy (RT). Due to its intrinsic heterogeneity and lack of effective targets, it is crucial to identify novel molecular targets that would increase RT efficacy. Here we demonstrate the role of BUB1 (cell cycle Ser/Thr kinase) in TNBC radioresistance and offer a novel strategy to improve TNBC treatment.

METHODS:

Gene expression analysis was performed to look at genes upregulated in TNBC patient samples compared to other subtypes. Cell proliferation and clonogenic survivals assays determined the IC50 of BUB1 inhibitor (BAY1816032) and radiation enhancement ratio (rER) with pharmacologic and genomic BUB1 inhibition. Mammary fat pad xenografts experiments were performed in CB17/SCID. The mechanism through which BUB1 inhibitor sensitizes TNBC cells to radiotherapy was delineated by γ-H2AX foci assays, BLRR, Immunoblotting, qPCR, CHX chase, and cell fractionation assays.

RESULTS:

BUB1 is overexpressed in BC and its expression is considerably elevated in TNBC with poor survival outcomes. Pharmacological or genomic ablation of BUB1 sensitized multiple TNBC cell lines to cell killing by radiation, although breast epithelial cells showed no radiosensitization with BUB1 inhibition. Kinase function of BUB1 is mainly accountable for this radiosensitization phenotype. BUB1 ablation also led to radiosensitization in TNBC tumor xenografts with significantly increased tumor growth delay and overall survival. Mechanistically, BUB1 ablation inhibited the repair of radiation-induced DNA double strand breaks (DSBs). BUB1 ablation stabilized phospho-DNAPKcs (S2056) following RT such that half-lives could not be estimated. In contrast, RT alone caused BUB1 stabilization, but pre-treatment with BUB1 inhibitor prevented stabilization (t1/2, ~8 h). Nuclear and chromatin-enriched fractionations illustrated an increase in recruitment of phospho- and total-DNAPK, and KAP1 to chromatin indicating that BUB1 is indispensable in the activation and recruitment of non-homologous end joining (NHEJ) proteins to DSBs. Additionally, BUB1 staining of TNBC tissue microarrays demonstrated significant correlation of BUB1 protein expression with tumor grade.

CONCLUSIONS:

BUB1 ablation sensitizes TNBC cell lines and xenografts to RT and BUB1 mediated radiosensitization may occur through NHEJ. Together, these results highlight BUB1 as a novel molecular target for radiosensitization in women with TNBC.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Tolerância a Radiação / Proteínas Serina-Treonina Quinases / Reparo do DNA por Junção de Extremidades / Neoplasias de Mama Triplo Negativas Limite: Animals / Female / Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Tolerância a Radiação / Proteínas Serina-Treonina Quinases / Reparo do DNA por Junção de Extremidades / Neoplasias de Mama Triplo Negativas Limite: Animals / Female / Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article