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Page 1
Allele-Specific Reprogramming of Cancer Metabolism by the Long Non-coding RNA CCAT2.
Redis RS, Vela LE, Lu W, Ferreira de Oliveira J, Ivan C, Rodriguez-Aguayo C, Adamoski D, Pasculli B, Taguchi A, Chen Y, Fernandez AF, Valledor L, Van Roosbroeck K, Chang S, Shah M, Kinnebrew G, Han L, Atlasi Y, Cheung LH, Huang GY, Monroig P, Ramirez MS, Catela Ivkovic T, Van L, Ling H, Gafà R, Kapitanovic S, Lanza G, Bankson JA, Huang P, Lai SY, Bast RC, Rosenblum MG, Radovich M, Ivan M, Bartholomeusz G, Liang H, Fraga MF, Widger WR, Hanash S, Berindan-Neagoe I, Lopez-Berestein G, Ambrosio ALB, Gomes Dias SM, Calin GA. Redis RS, et al. Among authors: kinnebrew g. Mol Cell. 2016 Feb 18;61(4):520-534. doi: 10.1016/j.molcel.2016.01.015. Epub 2016 Feb 4. Mol Cell. 2016. PMID: 26853146 Free PMC article.
The nuclear hypoxia-regulated NLUCAT1 long non-coding RNA contributes to an aggressive phenotype in lung adenocarcinoma through regulation of oxidative stress.
Moreno Leon L, Gautier M, Allan R, Ilié M, Nottet N, Pons N, Paquet A, Lebrigand K, Truchi M, Fassy J, Magnone V, Kinnebrew G, Radovich M, Cheok MH, Barbry P, Vassaux G, Marquette CH, Ponzio G, Ivan M, Pottier N, Hofman P, Mari B, Rezzonico R. Moreno Leon L, et al. Among authors: kinnebrew g. Oncogene. 2019 Nov;38(46):7146-7165. doi: 10.1038/s41388-019-0935-y. Epub 2019 Aug 15. Oncogene. 2019. PMID: 31417181
Allele-Specific Reprogramming of Cancer Metabolism by the Long Non-coding RNA CCAT2.
Redis RS, Vela LE, Lu W, Ferreira de Oliveira J, Ivan C, Rodriguez-Aguayo C, Adamoski D, Pasculli B, Taguchi A, Chen Y, Fernandez AF, Valledor L, Van Roosbroeck K, Chang S, Shah M, Kinnebrew G, Han L, Atlasi Y, Cheung LH, Huang GY, Monroig P, Ramirez MS, Catela Ivkovic T, Van L, Ling H, Gafà R, Kapitanovic S, Lanza G, Bankson JA, Huang P, Lai SY, Bast RC, Rosenblum MG, Radovich M, Ivan M, Bartholomeusz G, Liang H, Fraga MF, Widger WR, Hanash S, Berindan-Neagoe I, Lopez-Berestein G, Ambrosio ALB, Gomes Dias SM, Calin GA. Redis RS, et al. Among authors: kinnebrew g. Mol Cell. 2016 Feb 18;61(4):640. doi: 10.1016/j.molcel.2016.02.006. Epub 2016 Feb 18. Mol Cell. 2016. PMID: 28934601 Free article. No abstract available.
Correction: The nuclear hypoxia-regulated NLUCAT1 long non-coding RNA contributes to an aggressive phenotype in lung adenocarcinoma through regulation of oxidative stress.
Leon LM, Gautier M, Allan R, Ilié M, Nottet N, Pons N, Paquet A, Lebrigand K, Truchi M, Fassy J, Magnone V, Kinnebrew G, Radovich M, Cheok MH, Barbry P, Vassaux G, Marquette CH, Ponzio G, Ivan M, Pottier N, Hofman P, Mari B, Rezzonico R. Leon LM, et al. Among authors: kinnebrew g. Oncogene. 2021 Apr;40(14):2621. doi: 10.1038/s41388-021-01670-3. Oncogene. 2021. PMID: 33686243
Transplantation of mouse HSCs genetically modified to express a CD4-restricted TCR results in long-term immunity that destroys tumors and initiates spontaneous autoimmunity.
Ha SP, Klemen ND, Kinnebrew GH, Brandmaier AG, Marsh J, Hangoc G, Palmer DC, Restifo NP, Cornetta K, Broxmeyer HE, Touloukian CE. Ha SP, et al. Among authors: kinnebrew gh. J Clin Invest. 2010 Dec;120(12):4273-88. doi: 10.1172/JCI43274. Epub 2010 Nov 15. J Clin Invest. 2010. PMID: 21084750 Free PMC article.