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Page 1
NRF2 activation induces NADH-reductive stress, providing a metabolic vulnerability in lung cancer.
Weiss-Sadan T, Ge M, Hayashi M, Gohar M, Yao CH, de Groot A, Harry S, Carlin A, Fischer H, Shi L, Wei TY, Adelmann CH, Wolf K, Vornbäumen T, Dürr BR, Takahashi M, Richter M, Zhang J, Yang TY, Vijay V, Fisher DE, Hata AN, Haigis MC, Mostoslavsky R, Bardeesy N, Papagiannakopoulos T, Bar-Peled L. Weiss-Sadan T, et al. Among authors: bardeesy n. Cell Metab. 2023 Mar 7;35(3):487-503.e7. doi: 10.1016/j.cmet.2023.01.012. Epub 2023 Feb 24. Cell Metab. 2023. PMID: 36841242 Free PMC article.
Identification of chemotherapy targets reveals a nucleus-to-mitochondria ROS sensing pathway.
Zhang J, Simpson CM, Berner J, Chong HB, Fang J, Sahin ZO, Weiss-Sadan T, Possemato AP, Harry S, Takahashi M, Yang TY, Richter M, Patel H, Smith AE, Carlin AD, Hubertus de Groot AF, Wolf K, Shi L, Wei TY, Dürr BR, Chen NJ, Vornbäumen T, Wichmann NO, Pooladanda V, Matoba Y, Kumar S, Kim E, Bouberhan S, Olivia E, Rueda B, Bardeesy N, Liau B, Lawrence M, Stokes MP, Beausoleil SA, Bar-Peled L. Zhang J, et al. Among authors: bardeesy n. bioRxiv [Preprint]. 2023 Mar 11:2023.03.11.532189. doi: 10.1101/2023.03.11.532189. bioRxiv. 2023. Update in: Cell. 2023 May 25;186(11):2361-2379.e25. doi: 10.1016/j.cell.2023.04.026 PMID: 36945474 Free PMC article. Updated. Preprint.
NRF2 activation induces NADH-reductive stress, providing a metabolic vulnerability in lung cancer.
Weiss-Sadan T, Ge M, Hayashi M, Gohar M, Yao CH, de Groot A, Harry S, Carlin A, Fischer H, Shi L, Wei TY, Adelmann CH, Wolf K, Vornbäumen T, Dürr BR, Takahashi M, Richter M, Zhang J, Yang TY, Vijay V, Fisher DE, Hata AN, Haigis MC, Mostoslavsky R, Bardeesy N, Papagiannakopoulos T, Bar-Peled L. Weiss-Sadan T, et al. Among authors: bardeesy n. Cell Metab. 2023 Apr 4;35(4):722. doi: 10.1016/j.cmet.2023.03.011. Cell Metab. 2023. PMID: 37019082 Free PMC article. No abstract available.
In vivo metabolomics identifies CD38 as an emergent vulnerability in LKB1 -mutant lung cancer.
Deng J, Peng DH, Fenyo D, Yuan H, Lopez A, Levin DS, Meynardie M, Quinteros M, Ranieri M, Sahu S, Lau SCM, Shum E, Velcheti V, Punekar SR, Rekhtman N, Dowling CM, Weerasekara V, Xue Y, Ji H, Siu Y, Jones D, Hata AN, Shimamura T, Poirier JT, Rudin CM, Hattori T, Koide S, Papagiannakopoulos T, Neel BG, Bardeesy N, Wong KK. Deng J, et al. Among authors: bardeesy n. bioRxiv [Preprint]. 2023 Apr 20:2023.04.18.537350. doi: 10.1101/2023.04.18.537350. bioRxiv. 2023. PMID: 37131623 Free PMC article. Preprint.
Systematic identification of anticancer drug targets reveals a nucleus-to-mitochondria ROS-sensing pathway.
Zhang J, Simpson CM, Berner J, Chong HB, Fang J, Ordulu Z, Weiss-Sadan T, Possemato AP, Harry S, Takahashi M, Yang TY, Richter M, Patel H, Smith AE, Carlin AD, Hubertus de Groot AF, Wolf K, Shi L, Wei TY, Dürr BR, Chen NJ, Vornbäumen T, Wichmann NO, Mahamdeh MS, Pooladanda V, Matoba Y, Kumar S, Kim E, Bouberhan S, Oliva E, Rueda BR, Soberman RJ, Bardeesy N, Liau BB, Lawrence M, Stokes MP, Beausoleil SA, Bar-Peled L. Zhang J, et al. Among authors: bardeesy n. Cell. 2023 May 25;186(11):2361-2379.e25. doi: 10.1016/j.cell.2023.04.026. Epub 2023 May 15. Cell. 2023. PMID: 37192619 Free PMC article.
DrugMap: A quantitative pan-cancer analysis of cysteine ligandability.
Takahashi M, Chong HB, Zhang S, Lazarov MJ, Harry S, Maynard M, White R, Murrey HE, Hilbert B, Neil JR, Gohar M, Ge M, Zhang J, Durr BR, Kryukov G, Tsou CC, Brooijmans N, Alghali ASO, Rubio K, Vilanueva A, Harrison D, Koglin AS, Ojeda S, Karakyriakou B, Healy A, Assaad J, Makram F, Rachman I, Khandelwal N, Tien PC, Popoola G, Chen N, Vordermark K, Richter M, Patel H, Yang TY, Griesshaber H, Hosp T, van den Ouweland S, Hara T, Bussema L, Dong R, Shi L, Rasmussen MQ, Domingues AC, Lawless A, Fang J, Yoda S, Nguyen LP, Reeves SM, Wakefield FN, Acker A, Clark SE, Dubash T, Fisher DE, Maheswaran S, Haber DA, Boland G, Sade-Feldman M, Jenkins R, Hata A, Bardeesy N, Suva ML, Martin B, Liau B, Ott C, Rivera MN, Lawrence MS, Bar-Peled L. Takahashi M, et al. Among authors: bardeesy n. bioRxiv [Preprint]. 2023 Oct 23:2023.10.20.563287. doi: 10.1101/2023.10.20.563287. bioRxiv. 2023. Update in: Cell. 2024 May 9;187(10):2536-2556.e30. doi: 10.1016/j.cell.2024.03.027 PMID: 37961514 Free PMC article. Updated. Preprint.
DrugMap: A quantitative pan-cancer analysis of cysteine ligandability.
Takahashi M, Chong HB, Zhang S, Yang TY, Lazarov MJ, Harry S, Maynard M, Hilbert B, White RD, Murrey HE, Tsou CC, Vordermark K, Assaad J, Gohar M, Dürr BR, Richter M, Patel H, Kryukov G, Brooijmans N, Alghali ASO, Rubio K, Villanueva A, Zhang J, Ge M, Makram F, Griesshaber H, Harrison D, Koglin AS, Ojeda S, Karakyriakou B, Healy A, Popoola G, Rachmin I, Khandelwal N, Neil JR, Tien PC, Chen N, Hosp T, van den Ouweland S, Hara T, Bussema L, Dong R, Shi L, Rasmussen MQ, Domingues AC, Lawless A, Fang J, Yoda S, Nguyen LP, Reeves SM, Wakefield FN, Acker A, Clark SE, Dubash T, Kastanos J, Oh E, Fisher DE, Maheswaran S, Haber DA, Boland GM, Sade-Feldman M, Jenkins RW, Hata AN, Bardeesy NM, Suvà ML, Martin BR, Liau BB, Ott CJ, Rivera MN, Lawrence MS, Bar-Peled L. Takahashi M, et al. Among authors: bardeesy nm. Cell. 2024 May 9;187(10):2536-2556.e30. doi: 10.1016/j.cell.2024.03.027. Epub 2024 Apr 22. Cell. 2024. PMID: 38653237
Histone Deacetylase 6 Inhibition Exploits Selective Metabolic Vulnerabilities in LKB1 Mutant, KRAS Driven NSCLC.
Zhang H, Nabel CS, Li D, O'Connor RÍ, Crosby CR, Chang SM, Hao Y, Stanley R, Sahu S, Levin DS, Chen T, Tang S, Huang HY, Meynardie M, Stephens J, Sherman F, Chafitz A, Costelloe N, Rodrigues DA, Fogarty H, Kiernan MG, Cronin F, Papadopoulos E, Ploszaj M, Weerasekara V, Deng J, Kiely P, Bardeesy N, Vander Heiden MG, Chonghaile TN, Dowling CM, Wong KK. Zhang H, et al. Among authors: bardeesy n. J Thorac Oncol. 2023 Jul;18(7):882-895. doi: 10.1016/j.jtho.2023.03.014. Epub 2023 Mar 22. J Thorac Oncol. 2023. PMID: 36958689 Free PMC article.
Integrative Genomic Analysis of Cholangiocarcinoma Identifies Distinct IDH-Mutant Molecular Profiles.
Farshidfar F, Zheng S, Gingras MC, Newton Y, Shih J, Robertson AG, Hinoue T, Hoadley KA, Gibb EA, Roszik J, Covington KR, Wu CC, Shinbrot E, Stransky N, Hegde A, Yang JD, Reznik E, Sadeghi S, Pedamallu CS, Ojesina AI, Hess JM, Auman JT, Rhie SK, Bowlby R, Borad MJ; Cancer Genome Atlas Network; Zhu AX, Stuart JM, Sander C, Akbani R, Cherniack AD, Deshpande V, Mounajjed T, Foo WC, Torbenson MS, Kleiner DE, Laird PW, Wheeler DA, McRee AJ, Bathe OF, Andersen JB, Bardeesy N, Roberts LR, Kwong LN. Farshidfar F, et al. Among authors: bardeesy n. Cell Rep. 2017 Mar 14;18(11):2780-2794. doi: 10.1016/j.celrep.2017.02.033. Cell Rep. 2017. PMID: 28297679 Free PMC article.
Reprogramming Intrahepatic Cholangiocarcinoma Immune Microenvironment by Chemotherapy and CTLA-4 Blockade Enhances Anti-PD1 Therapy.
Chen J, Amoozgar Z, Liu X, Aoki S, Liu Z, Shin S, Matsui A, Pu Z, Lei PJ, Datta M, Zhu L, Ruan Z, Shi L, Staiculescu D, Inoue K, Munn LL, Fukumura D, Huang P, Bardeesy N, Ho WJ, Jain RK, Duda DG. Chen J, et al. Among authors: bardeesy n. bioRxiv [Preprint]. 2023 Jan 27:2023.01.26.525680. doi: 10.1101/2023.01.26.525680. bioRxiv. 2023. Update in: Cancer Immunol Res. 2024 Apr 2;12(4):400-412. doi: 10.1158/2326-6066.CIR-23-0486 PMID: 36747853 Free PMC article. Updated. Preprint.
239 results