Cell Reports · 2020 · 49 citations · 35 references
Immune checkpoint blockade (ICB) has led to therapeutic responses in some cancer patients for whom no effective treatment previously existed. ICB acts on T lymphocytes and other immune cells that are inactivated due to checkpoint signals that inhibit their infiltration and function within tumors. But for more than 80% of patients, immunotherapy has not been effective. Here, we demonstrate a cancer-cell-intrinsic mechanism of immune evasion and resistance to ICB mediated by baculoviral IAP repeat-containing 2 (BIRC2). Knockdown of BIRC2 expression in mouse melanoma or breast cancer cells increases expression of the chemokine CXCL9 and impairs tumor growth by increasing the number of intratumoral activated CD8<sup>+</sup> T cells and natural killer cells. Administration of anti-CXCL9 neutralizing antibody inhibits the recruitment of CD8<sup>+</sup> T cells and natural killer cells to BIRC2-deficient tumors. Most importantly, BIRC2 deficiency dramatically increases the sensitivity of mouse melanoma and breast tumors to anti-CTLA4 and/or anti-PD1 ICB.
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Ethan Cerami, Jianjiong Gao, Uğur Doğrusöz et al. · Cancer Discovery · 2012 · 17.9K citations · Full text
Integrative Analysis of Complex Cancer Genomics and Clinical Profiles Using the cBioPortal
Jianjiong Gao, Bülent Arman Aksoy, Uğur Doğrusöz et al. · Science Signaling · 2013 · 15.5K citations · Full text
Safety, Activity, and Immune Correlates of Anti–PD-1 Antibody in Cancer
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Comprehensive molecular portraits of human breast tumours
Nature · 2012 · 12.1K citations · Full text
Breast Oncology, Comprehensive Molecular Portraits, Tumor Heterogeneity +6
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James Larkin, Vanna Chiarion‐Sileni, René González et al. · New England Journal of Medicine · 2015 · 8K citations · Full text