Platelet-mediated circulating tumor cell evasion from natural killer cell killing through immune checkpoint CD155-TIGIT

Author:

Sun Yunfan1ORCID,Li Tong2,Ding Lin2ORCID,Wang Jiyan2,Chen Chen3ORCID,Liu Te4,Liu Yu2,Li Qian25,Wang Chuyu2,Huo Ran2,Wang Hao2,Tian Tongtong2,Zhang Chunyan26,Pan Baishen2,Zhou Jian1,Fan Jia1,Yang Xinrong1,Yang Wenjing2ORCID,Wang Beili257ORCID,Guo Wei25678ORCID

Affiliation:

1. Department of Liver Surgery & Transplantation, Liver Cancer Institute, Zhongshan Hospital, Fudan University; Key Laboratory of Carcinogenesis and Cancer Invasion, Ministry of Education, Shanghai, China

2. Department of Laboratory Medicine, Zhongshan Hospital, Fudan University, Shanghai, China

3. Department of Cell Biology, Shanghai Dunwill Medical Technology Company, Shanghai, China

4. Shanghai Geriatric Institute of Chinese Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai, China

5. Department of Laboratory Medicine, Wusong Branch, Zhongshan Hospital, Fudan University, Shanghai, China

6. Department of Laboratory Medicine, Xiamen Branch, Zhongshan Hospital, Fudan University, Xiamen, China

7. Department of Laboratory Medicine, Shanghai Geriatric Medical Center, Shanghai, China

8. Cancer Center, Zhongshan Hospital, Fudan University, Shanghai, China

Abstract

Background and Aims: Circulating tumor cells (CTCs) are precursors of cancer metastasis. However, how CTCs evade immunosurveillance during hematogenous dissemination remains unclear. Approach and Results: We identified CTC-platelet adhesions by single-cell RNA sequencing and multiplex immunofluorescence of blood samples from multiple cancer types. Clinically, CTC-platelet aggregates were associated with significantly shorter progression-free survival and overall survival in patients with HCC. In vitro, ex vivo, and in vivo assays demonstrated direct platelet adhesions gifted cancer cells with an evasive ability from NK cell killing by upregulating inhibitory checkpoint CD155 (PVR cell adhesion molecule), therefore facilitating distant metastasis. Mechanistically, CD155 was transcriptionally regulated by the FAK/JNK/c-Jun cascade in a platelet contact–dependent manner. Further competition assays and cytotoxicity experiments revealed that CD155 on CTCs inhibited NK-cell cytotoxicity only by engaging with immune receptor TIGIT, but not CD96 and DNAM1, another 2 receptors for CD155. Interrupting the CD155-TIGIT interactions with a TIGIT antibody restored NK-cell immunosurveillance on CTCs and markedly attenuated tumor metastasis. Conclusions: Our results demonstrated CTC evasion from NK-cell–mediated innate immunosurveillance mainly through immune checkpoint CD155-TIGIT, potentially offering an immunotherapeutic strategy for eradicating CTCs.

Publisher

Ovid Technologies (Wolters Kluwer Health)

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