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A draft map of the human proteome.
Kim MS, Pinto SM, Getnet D, Nirujogi RS, Manda SS, Chaerkady R, Madugundu AK, Kelkar DS, Isserlin R, Jain S, Thomas JK, Muthusamy B, Leal-Rojas P, Kumar P, Sahasrabuddhe NA, Balakrishnan L, Advani J, George B, Renuse S, Selvan LD, Patil AH, Nanjappa V, Radhakrishnan A, Prasad S, Subbannayya T, Raju R, Kumar M, Sreenivasamurthy SK, Marimuthu A, Sathe GJ, Chavan S, Datta KK, Subbannayya Y, Sahu A, Yelamanchi SD, Jayaram S, Rajagopalan P, Sharma J, Murthy KR, Syed N, Goel R, Khan AA, Ahmad S, Dey G, Mudgal K, Chatterjee A, Huang TC, Zhong J, Wu X, Shaw PG, Freed D, Zahari MS, Mukherjee KK, Shankar S, Mahadevan A, Lam H, Mitchell CJ, Shankar SK, Satishchandra P, Schroeder JT, Sirdeshmukh R, Maitra A, Leach SD, Drake CG, Halushka MK, Prasad TS, Hruban RH, Kerr CL, Bader GD, Iacobuzio-Donahue CA, Gowda H, Pandey A. Kim MS, et al. Nature. 2014 May 29;509(7502):575-81. doi: 10.1038/nature13302. Nature. 2014. PMID: 24870542 Free PMC article.
Global phosphotyrosine survey in triple-negative breast cancer reveals activation of multiple tyrosine kinase signaling pathways.
Wu X, Zahari MS, Ma B, Liu R, Renuse S, Sahasrabuddhe NA, Chen L, Chaerkady R, Kim MS, Zhong J, Jelinek C, Barbhuiya MA, Leal-Rojas P, Yang Y, Kashyap MK, Marimuthu A, Ling M, Fackler MJ, Merino V, Zhang Z, Zahnow CA, Gabrielson E, Stearns V, Roa JC, Sukumar S, Gill PS, Pandey A. Wu X, et al. Among authors: Zahari MS. Oncotarget. 2015 Oct 6;6(30):29143-60. doi: 10.18632/oncotarget.5020. Oncotarget. 2015. PMID: 26356563 Free PMC article.
Phosphoproteomic Analysis Identifies Focal Adhesion Kinase 2 (FAK2) as a Potential Therapeutic Target for Tamoxifen Resistance in Breast Cancer.
Wu X, Zahari MS, Renuse S, Nirujogi RS, Kim MS, Manda SS, Stearns V, Gabrielson E, Sukumar S, Pandey A. Wu X, et al. Among authors: Zahari MS. Mol Cell Proteomics. 2015 Nov;14(11):2887-900. doi: 10.1074/mcp.M115.050484. Epub 2015 Sep 1. Mol Cell Proteomics. 2015. PMID: 26330541 Free PMC article.
Activation of diverse signalling pathways by oncogenic PIK3CA mutations.
Wu X, Renuse S, Sahasrabuddhe NA, Zahari MS, Chaerkady R, Kim MS, Nirujogi RS, Mohseni M, Kumar P, Raju R, Zhong J, Yang J, Neiswinger J, Jeong JS, Newman R, Powers MA, Somani BL, Gabrielson E, Sukumar S, Stearns V, Qian J, Zhu H, Vogelstein B, Park BH, Pandey A. Wu X, et al. Among authors: Zahari MS. Nat Commun. 2014 Sep 23;5:4961. doi: 10.1038/ncomms5961. Nat Commun. 2014. PMID: 25247763 Free PMC article.
A phosphoproteomic screen demonstrates differential dependence on HER3 for MAP kinase pathway activation by distinct PIK3CA mutations.
Blair BG, Wu X, Zahari MS, Mohseni M, Cidado J, Wong HY, Beaver JA, Cochran RL, Zabransky DJ, Croessmann S, Chu D, Toro PV, Cravero K, Pandey A, Park BH. Blair BG, et al. Among authors: Zahari MS. Proteomics. 2015 Jan;15(2-3):318-26. doi: 10.1002/pmic.201400342. Epub 2014 Dec 28. Proteomics. 2015. PMID: 25367220 Free PMC article.
Correction to: Quantitative phosphoproteomic analysis reveals reciprocal activation of receptor tyrosine kinases between cancer epithelial cells and stromal fibroblasts.
Wu X, Zahari MS, Renuse S, Sahasrabuddhe NA, Chaerkady R, Kim MS, Fackler MJ, Stampfer M, Gabrielson E, Sukumar S, Pandey A. Wu X, et al. Among authors: Zahari MS. Clin Proteomics. 2018 Nov 17;15:37. doi: 10.1186/s12014-018-9210-4. eCollection 2018. Clin Proteomics. 2018. PMID: 30479584 Free PMC article.
Quantitative phosphoproteomic analysis reveals reciprocal activation of receptor tyrosine kinases between cancer epithelial cells and stromal fibroblasts.
Wu X, Zahari MS, Renuse S, Sahasrabuddhe NA, Chaerkady R, Kim MS, Fackler MJ, Stampfer M, Gabrielson E, Sukumar S, Pandey A. Wu X, et al. Among authors: Zahari MS. Clin Proteomics. 2018 Jun 15;15:21. doi: 10.1186/s12014-018-9197-x. eCollection 2018. Clin Proteomics. 2018. PMID: 29946230 Free PMC article.
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