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Inhibition of ATR-Chk1 signaling blocks DNA double-strand-break repair and induces cytoplasmic vacuolization in metastatic osteosarcoma.

Publication ,  Journal Article
Li, X; Dean, DC; Cote, GM; Zou, L; Hornicek, FJ; Yu, S; Duan, Z
Published in: Ther Adv Med Oncol
2020

BACKGROUND: Ataxia-telangiectasia and Rad3 related protein kinase (ATR) is an essential regulator of the DNA damage response in various cancers; however, its expression and roles in osteosarcoma are unclear. We therefore chose to evaluate the significance and mechanism of ATR in metastatic osteosarcoma, as well as its potential to be a therapeutic target. METHODS: The osteosarcoma tissue microarrays constructed from 70 patient specimens underwent immunohistochemistry to quantify ATR and activated phospho-ATR (pATR) expression and their correlation with clinical outcomes. ATR sublocalization within the metastatic osteosarcoma cells was confirmed by immunofluorescence assay. Cell proliferation, apoptosis, and migration were evaluated following treatment with ATR siRNA or the selective inhibitor Berzosertib. Antitumor effects were determined with ex vivo three-dimensional (3D) culture models, and the impacts on the DNA damage repair pathways were measured with Western blotting. RESULTS: Elevated ATR and activated pATR expression correlated with shorter patient survival and less necrosis following neoadjuvant chemotherapy. Intranuclear sublocalization of ATR and pATR suggested a mechanism related to DNA replication. ATR knockdown with siRNA or inhibition with Berzosertib suppressed cell proliferation in a time- and dose-dependent manner and induced apoptosis. In addition, ATR inhibition decreased Chk1 phosphorylation while increasing γH2AX expression and PARP cleavage, consistent with the interference of DNA damage repair. The ATR inhibitor Berzosertib also produced the characteristic cytoplasmic vacuolization preceding cell death, and suppressed ex vivo 3D spheroid formation and cell motility. CONCLUSION: The faithful dependence of cells on ATR signaling for survival and progression makes it an emerging therapeutic target in metastatic osteosarcoma.

Duke Scholars

Published In

Ther Adv Med Oncol

DOI

ISSN

1758-8340

Publication Date

2020

Volume

12

Start / End Page

1758835920956900

Location

England

Related Subject Headings

  • 3211 Oncology and carcinogenesis
 

Citation

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Li, X., Dean, D. C., Cote, G. M., Zou, L., Hornicek, F. J., Yu, S., & Duan, Z. (2020). Inhibition of ATR-Chk1 signaling blocks DNA double-strand-break repair and induces cytoplasmic vacuolization in metastatic osteosarcoma. Ther Adv Med Oncol, 12, 1758835920956900. https://doi.org/10.1177/1758835920956900
Li, Xiaoyang, Dylan C. Dean, Gregory M. Cote, Lee Zou, Francis J. Hornicek, Shengji Yu, and Zhenfeng Duan. “Inhibition of ATR-Chk1 signaling blocks DNA double-strand-break repair and induces cytoplasmic vacuolization in metastatic osteosarcoma.Ther Adv Med Oncol 12 (2020): 1758835920956900. https://doi.org/10.1177/1758835920956900.
Li X, Dean DC, Cote GM, Zou L, Hornicek FJ, Yu S, et al. Inhibition of ATR-Chk1 signaling blocks DNA double-strand-break repair and induces cytoplasmic vacuolization in metastatic osteosarcoma. Ther Adv Med Oncol. 2020;12:1758835920956900.
Li, Xiaoyang, et al. “Inhibition of ATR-Chk1 signaling blocks DNA double-strand-break repair and induces cytoplasmic vacuolization in metastatic osteosarcoma.Ther Adv Med Oncol, vol. 12, 2020, p. 1758835920956900. Pubmed, doi:10.1177/1758835920956900.
Li X, Dean DC, Cote GM, Zou L, Hornicek FJ, Yu S, Duan Z. Inhibition of ATR-Chk1 signaling blocks DNA double-strand-break repair and induces cytoplasmic vacuolization in metastatic osteosarcoma. Ther Adv Med Oncol. 2020;12:1758835920956900.
Journal cover image

Published In

Ther Adv Med Oncol

DOI

ISSN

1758-8340

Publication Date

2020

Volume

12

Start / End Page

1758835920956900

Location

England

Related Subject Headings

  • 3211 Oncology and carcinogenesis