Senescence Rewires Microenvironment Sensing to Facilitate Antitumor Immunity

Author:

Chen Hsuan-An12ORCID,Ho Yu-Jui1ORCID,Mezzadra Riccardo1ORCID,Adrover Jose M.3ORCID,Smolkin Ryan2ORCID,Zhu Changyu1ORCID,Woess Katharina4ORCID,Bernstein Nicholas5ORCID,Schmitt Georgia5ORCID,Fong Linda5ORCID,Luan Wei1ORCID,Wuest Alexandra1ORCID,Tian Sha1ORCID,Li Xiang1ORCID,Broderick Caroline1ORCID,Hendrickson Ronald C.6ORCID,Egeblad Mikala3ORCID,Chen Zhenghao5ORCID,Alonso-Curbelo Direna14ORCID,Lowe Scott W.17ORCID

Affiliation:

1. 1Department of Cancer Biology and Genetics, Memorial Sloan Kettering Cancer Center, New York, New York.

2. 2Louis V. Gerstner Jr. Graduate School of Biomedical Sciences, Memorial Sloan Kettering Cancer Center, New York, New York.

3. 3Cold Spring Harbor Laboratory, Cold Spring Harbor, New York.

4. 4Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology (BIST), Barcelona, Spain.

5. 5Calico Life Sciences, South San Francisco, California.

6. 6Microchemistry and Proteomics Core Laboratory, Memorial Sloan Kettering Cancer Center, New York, New York.

7. 7Howard Hughes Medical Institute, Chevy Chase, Maryland.

Abstract

Abstract Cellular senescence involves a stable cell-cycle arrest coupled to a secretory program that, in some instances, stimulates the immune clearance of senescent cells. Using an immune-competent liver cancer model in which senescence triggers CD8 T cell–mediated tumor rejection, we show that senescence also remodels the cell-surface proteome to alter how tumor cells sense environmental factors, as exemplified by type II interferon (IFNγ). Compared with proliferating cells, senescent cells upregulate the IFNγ receptor, become hypersensitized to microenvironmental IFNγ, and more robustly induce the antigen-presenting machinery—effects also recapitulated in human tumor cells undergoing therapy-induced senescence. Disruption of IFNγ sensing in senescent cells blunts their immune-mediated clearance without disabling the senescence state or its characteristic secretory program. Our results demonstrate that senescent cells have an enhanced ability to both send and receive environmental signals and imply that each process is required for their effective immune surveillance. Significance: Our work uncovers an interplay between tissue remodeling and tissue-sensing programs that can be engaged by senescence in advanced cancers to render tumor cells more visible to the adaptive immune system. This new facet of senescence establishes reciprocal heterotypic signaling interactions that can be induced therapeutically to enhance antitumor immunity. See related article by Marin et al., p. 410. This article is highlighted in the In This Issue feature, p. 247

Funder

National Cancer Institute

"la Caixa" Foundation

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

Cancer Research Institute

Cold Spring Harbor Laboratory

Calico Life Sciences grants

Howard Hughes Medical Institute

Institute for Research in Biomedicine

Publisher

American Association for Cancer Research (AACR)

Subject

Oncology

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