Abstract

The DNA damage response (DDR) secures the integrity of the genome of eukaryotic cells. DDR deficiencies can promote tumorigenesis but concurrently may increase dependence on alternative repair pathways. The ataxia telangiectasia and Rad3-related (ATR) kinase plays a central role in the DDR by activating essential signaling pathways of DNA damage repair. Here, we studied the effect of the novel selective ATR kinase inhibitor BAY 1895344 on tumor cell growth and viability. Potent antiproliferative activity was demonstrated in a broad spectrum of human tumor cell lines. BAY 1895344 exhibited strong monotherapy efficacy in cancer xenograft models that carry DNA damage repair deficiencies. The combination of BAY 1895344 with DNA damage-inducing chemotherapy or external beam radiotherapy (EBRT) showed synergistic antitumor activity. Combination treatment with BAY 1895344 and DDR inhibitors achieved strong synergistic antiproliferative activity in vitro, and combined inhibition of ATR and PARP signaling using olaparib demonstrated synergistic antitumor activity in vivo Furthermore, the combination of BAY 1895344 with the novel, nonsteroidal androgen receptor antagonist darolutamide resulted in significantly improved antitumor efficacy compared with respective single-agent treatments in hormone-dependent prostate cancer, and addition of EBRT resulted in even further enhanced antitumor efficacy. Thus, the ATR inhibitor BAY 1895344 may provide new therapeutic options for the treatment of cancers with certain DDR deficiencies in monotherapy and in combination with DNA damage-inducing or DNA repair-compromising cancer therapies by improving their efficacy.

Highlights

  • The DNA damage response (DDR) consists of multiple and diverse signaling pathways that secure the integrity of the genome of living cells [1]

  • The ataxia telangiectasia and Rad3-related (ATR) kinase belongs to the phosphoinositide 3 kinase-related kinase family and plays a key role in the DNA replication stress response (RSR) pathway of DNA damage repair to maintain the genomic integrity through DDR activation [6,7,8,9]

  • Five other kinases were inhibited with an IC50 value in the concentration range tested (

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Summary

Introduction

The DNA damage response (DDR) consists of multiple and diverse signaling pathways that secure the integrity of the genome of living cells [1]. Proteins that directly recognize aberrant DNA structures recruit and activate kinases of the DDR pathways, which respond to a broad spectrum of DNA damage and to increased replication stress, for example, in oncogene-driven cancer cells [2,3,4,5]. The ataxia telangiectasia and Rad3-related (ATR) kinase belongs to the phosphoinositide 3 kinase-related kinase family and plays a key role in the DNA replication stress response (RSR) pathway of DNA damage repair to maintain the genomic integrity through DDR activation [6,7,8,9].

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