Hsu LC, Kennan WS, Shepel LA, et al. Genetic identification of Mcs-1, a rat mammary carcinoma suppressor gene. Cancer Res. 1994;54(10):2765-70.
Ding L, Getz G, Wheeler DA, et al. Somatic mutations affect key pathways in lung adenocarcinoma. Nature. 2008;455(7216):1069-75. doi:10.1038/nature07423
Jerby-Arnon L, Pfetzer N, Waldman YY, et al. Predicting cancer-specific vulnerability via data-driven detection of synthetic lethality. Cell. 2014;158(5):1199-209. doi:10.1016/j.cell.2014.07.027
Xue W, Chen S, Yin H, et al. CRISPR-mediated direct mutation of cancer genes in the mouse liver. Nature. 2014;514(7522):380-4. doi:10.1038/nature13589
Gong Y, Zack TI, Morris LGT, et al. Pan-cancer genetic analysis identifies PARK2 as a master regulator of G1/S cyclins. Nat Genet. 2014;46(6):588-94. doi:10.1038/ng.2981
Sandoval GJ, Graham DB, Gmyrek GB, et al. Novel mechanism of tumor suppression by polarity gene discs large 1 (DLG1) revealed in a murine model of pediatric B-ALL. Cancer Immunol Res. 2013;1(6):426-37. doi:10.1158/2326-6066.CIR-13-0065
Francis JM, Kiezun A, Ramos AH, et al. Somatic mutation of CDKN1B in small intestine neuroendocrine tumors. Nat Genet. 2013;45(12):1483-6. doi:10.1038/ng.2821
Nijhawan D, Zack TI, Ren Y, et al. Cancer vulnerabilities unveiled by genomic loss. Cell. 2012;150(4):842-54. doi:10.1016/j.cell.2012.07.023
Cuomo CA, Desjardins CA, Bakowski MA, et al. Microsporidian genome analysis reveals evolutionary strategies for obligate intracellular growth. Genome Res. 2012;22(12):2478-88. doi:10.1101/gr.142802.112
Stanbrough M, Bubley GJ, Ross K, et al. Increased expression of genes converting adrenal androgens to testosterone in androgen-independent prostate cancer. Cancer Res. 2006;66(5):2815-25. doi:10.1158/0008-5472.CAN-05-4000