CFI-402257, a TTK inhibitor, effectively suppresses hepatocellular carcinoma

Author:

Chan Cerise Yuen-Ki12,Chiu David Kung-Chun1,Yuen Vincent Wai-Hin12,Law Cheuk-Ting1,Wong Bowie Po-Yee1,Thu Kelsie Lynn3,Cescon David Ward3,Soria-Bretones Isabel3,Cheu Jacinth Wing-Sum12,Lee Derek12,Tse Aki Pui-Wah12,Zhang Misty Shuo12,Tan Kel Vin4ORCID,Ng Irene Oi-Lin15,Khong Pek-Lan4,Yau Thomas Chung-Cheung65,Bray Mark Robert3,Mak Tak Wah32ORCID,Wong Carmen Chak-Lui152

Affiliation:

1. Department of Pathology, The University of Hong Kong, Pok Fu Lam, Hong Kong Island, Hong Kong

2. Centre for Oncology and Immunology, Hong Kong Science Park, Hong Kong

3. The Campbell Family Institute for Breast Cancer Research, Princess Margaret Cancer Centre, Toronto, ON, Canada

4. Department of Diagnostic Radiology, The University of Hong Kong, Pok Fu Lam, Hong Kong Island, Hong Kong

5. State Key Laboratory of Liver Research, The University of Hong Kong, Pok Fu Lam, Hong Kong Island, Hong Kong

6. Department of Medicine, The University of Hong Kong, Pok Fu Lam, Hong Kong Island, Hong Kong

Abstract

Deregulation of cell cycle is a typical feature of cancer cells. Normal cells rely on the strictly coordinated spindle assembly checkpoint (SAC) to maintain the genome integrity and survive. However, cancer cells could bypass this checkpoint mechanism. In this study, we showed the clinical relevance of threonine tyrosine kinase (TTK) protein kinase, a central regulator of the SAC, in hepatocellular carcinoma (HCC) and its potential as therapeutic target. Here, we reported that a newly developed, orally active small molecule inhibitor targeting TTK (CFI-402257) effectively suppressed HCC growth and induced highly aneuploid HCC cells, DNA damage, and micronuclei formation. We identified that CFI-402257 also induced cytosolic DNA, senescence-like response, and activated DDX41-STING cytosolic DNA sensing pathway to produce senescence-associated secretory phenotypes (SASPs) in HCC cells. These SASPs subsequently led to recruitment of different subsets of immune cells (natural killer cells, CD4 + T cells, and CD8 + T cells) for tumor clearance. Our mass cytometry data illustrated the dynamic changes in the tumor-infiltrating immune populations after treatment with CFI-402257. Further, CFI-402257 improved survival in HCC-bearing mice treated with anti-PD-1, suggesting the possibility of combination treatment with immune checkpoint inhibitors in HCC patients. In summary, our study characterized CFI-402257 as a potential therapeutic for HCC, both used as a single agent and in combination therapy.

Funder

Croucher Foundation

The University of Hong Kong

National Natural Science Foundation of China

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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