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NK Cell-Specific CDK8 Deletion Enhances Antitumor Responses
Agnieszka Witalisz-Siepracka1, Dagmar Gotthardt1, Michaela Prchal-Murphy1
1Institute of Pharmacology and Toxicology, University of Veterinary Medicine, Vienna, Austria.
Abstract:
Cyclin-dependent kinase 8 (CDK8) is a member of the transcription-regulating CDK family. CDK8 activates or represses transcription by associating with the mediator complex or by regulating transcription factors. Oncogenic activity of CDK8 has been demonstrated in several cancer types. Targeting CDK8 represents a potential therapeutic strategy. Because knockdown of CDK8 in a natural killer (NK) cell line enhances cytotoxicity and NK cells provide the first line of immune defense against transformed cells, we asked whether inhibiting CDK8 would improve NK-cell antitumor responses. In this study, we investigated the role of CDK8 in NK-cell function in vivo using mice with conditional ablation of CDK8 in NKp46+ cells (Cdk8). Regardless of CDK8 expression, NK cells develop and mature normally in bone marrow and spleen. However, CDK8 deletion increased expression of the lytic molecule perforin, which correlated with enhanced NK-cell cytotoxicity in vitro This translates into improved NK cell-mediated tumor surveillance in vivo in three independent models: B16F10 melanoma, v-abl lymphoma, and a slowly developing oncogene-driven leukemia. Our results thereby define a suppressive effect of CDK8 on NK-cell activity. Therapies that target CDK8 in cancer patients may enhance NK-cell responses against tumor cells. Cancer Immunol Res; 6(4); 458-66. ©2018 AACR.
Insights
Inhibiting cyclin-dependent kinase 8 (CDK8) enhances natural killer (NK) cell antitumor responses. This study shows CDK8 suppresses NK cell activity, suggesting CDK8 inhibitors may boost anti-cancer immunity.
Area of Science:
- Immunology
- Molecular Biology
- Cancer Research
Background:
- Cyclin-dependent kinase 8 (CDK8) regulates transcription and has oncogenic roles in various cancers.
- Natural killer (NK) cells are crucial for immune defense against transformed cells.
- Previous studies indicated CDK8 knockdown enhances NK cell cytotoxicity.
Purpose of the Study:
- To investigate the role of CDK8 in NK cell function and anti-tumor responses in vivo.
- To determine if inhibiting CDK8 can improve NK cell-mediated anti-tumor immunity.
Main Methods:
- Conditional ablation of CDK8 in NKp46+ cells in mice (Cdk8 mice).
- Assessment of NK cell development, maturation, perforin expression, and cytotoxicity in vitro.
- Evaluation of NK cell-mediated tumor surveillance in vivo using melanoma, lymphoma, and leukemia models.
Main Results:
- CDK8 deletion did not affect NK cell development or maturation.
- CDK8 ablation led to increased perforin expression and enhanced NK cell cytotoxicity in vitro.
- Inhibition of CDK8 improved NK cell-mediated tumor surveillance in vivo across three different cancer models.
Conclusions:
- CDK8 exerts a suppressive effect on NK cell activity.
- Targeting CDK8 may represent a therapeutic strategy to enhance NK cell-based anti-tumor immune responses in cancer patients.
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