Selective activator of human ClpP triggers cell cycle arrest to inhibit lung squamous cell carcinoma

Author:

Zhou Lin-LinORCID,Zhang TaoORCID,Xue YunORCID,Yue ChuanORCID,Pan YihuiORCID,Wang PengyuORCID,Yang Teng,Li MeixiaORCID,Zhou HuORCID,Ding KanORCID,Gan JianhuaORCID,Ji HongbinORCID,Yang Cai-GuangORCID

Abstract

AbstractChemo-activation of mitochondrial ClpP exhibits promising anticancer properties. However, we are currently unaware of any studies using selective and potent ClpP activators in lung squamous cell carcinoma. In this work, we report on such an activator, ZK53, which exhibits therapeutic effects on lung squamous cell carcinoma in vivo. The crystal structure of ZK53/ClpP complex reveals a π-π stacking effect that is essential for ligand binding selectively to the mitochondrial ClpP. ZK53 features on a simple scaffold, which is distinct from the activators with rigid scaffolds, such as acyldepsipeptides and imipridones. ZK53 treatment causes a decrease of the electron transport chain in a ClpP-dependent manner, which results in declined oxidative phosphorylation and ATP production in lung tumor cells. Mechanistically, ZK53 inhibits the adenoviral early region 2 binding factor targets and activates the ataxia-telangiectasia mutated-mediated DNA damage response, eventually triggering cell cycle arrest. Lastly, ZK53 exhibits therapeutic effects on lung squamous cell carcinoma cells in xenograft and autochthonous mouse models.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China is launched by the Ministry of Science and Technology of the People's Republic of China.

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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