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PMID: 33525803 Published · ppublish English Journal Article

The MAPK hypothesis: immune-regulatory effects of MAPK-pathway genetic dysregulations and implications for breast cancer immunotherapy.

Emerging topics in life sciences ·Vol. 1 ·No. 5 ·2017-12-12 ·页码 429-445

Bedognetti D, Roelands J, Decock J, Wang E, Hendrickx W

Abstract

With the advent of checkpoint inhibition, immunotherapy has revolutionized the clinical management of several cancers, but has demonstrated limited efficacy in mammary carcinoma. Transcriptomic profiling of cancer samples defined distinct immunophenotypic categories characterized by different prognostic and predictive connotations. In breast cancer, genomic alterations leading to the dysregulation of mitogen-activated protein kinase (MAPK) pathways have been linked to an immune-silent phenotype associated with poor outcome and treatment resistance. These aberrations include mutations of MAP3K1 and MAP2K4, amplification of KRAS, BRAF, and RAF1, and truncations of NF1. Anticancer therapies targeting MAPK signaling by BRAF and MEK inhibitors have demonstrated clear immunologic effects. These off-target properties could be exploited to convert the immune-silent tumor phenotype into an immune-active one. Preclinical evidence supports that MAPK-pathway inhibition can dramatically increase the efficacy of immunotherapy. In this review, we provide a detailed overview of the immunomodulatory impact of MAPK-pathway blockade through BRAF and MEK inhibitions. While BRAF inhibition might be relevant in melanoma only, MEK inhibition is potentially applicable to a wide range of tumors. Context-dependent similarities and differences of MAPK modulation will be dissected, in light of the complexity of the MAPK pathways. Therapeutic strategies combining the favorable effects of MAPK-oriented interventions on the tumor microenvironment while maintaining T-cell function will be presented. Finally, we will discuss recent studies highlighting the rationale for the implementation of MAPK-interference approaches in combination with checkpoint inhibitors and immune agonists in breast cancer.

Keywords
MAP2K4 and MAP3K1 mutations MAPK modulation MEK inhibition breast cancer immunotherapy immune phenotypes transcriptomics
作者与单位
共 5 位作者,点击展开单位 / ORCID
Bedognetti Davide
Tumor Biology, Immunology, and Therapy Section, Department of Immunology, Inflammation and Metabolism, Division of Translational Medicine, Research Branch, Sidra Medical and Research Center, Doha, Qatar. | College of Science and Engineering, Hamad Bin Khalifa University, Qatar Foundation, Doha, Qatar.
Roelands Jessica
Tumor Biology, Immunology, and Therapy Section, Department of Immunology, Inflammation and Metabolism, Division of Translational Medicine, Research Branch, Sidra Medical and Research Center, Doha, Qatar.
Decock Julie
Cancer Center, Qatar Biomedical Research Institute, Hamad Bin Khalifa University, Qatar Foundation, Doha, Qatar.
Wang Ena
Division of Translational Medicine, Research Branch, Sidra Medical and Research Center, Doha, Qatar.
Hendrickx Wouter
Tumor Biology, Immunology, and Therapy Section, Department of Immunology, Inflammation and Metabolism, Division of Translational Medicine, Research Branch, Sidra Medical and Research Center, Doha, Qatar.
Article Info
Journal
Emerging topics in life sciences
Abbr.
Emerg Top Life Sci
ISSN
2397-8554
Published
2017-12-12
页码
429-445
Language
English
Country/Region
England
NLM ID
101706399
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