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Cancer Gene Therapy|August 14, 2018
Increasing the bactofection capacity of a mammalian expression vector by removal of the f1 oriSíle A Johnson, Michael J Ormsby, Anne McIntosh, et al.Genes & Development|December 19, 2015
Opposing effects of TIGAR- and RAC1-derived ROS on Wnt-driven proliferation in the mouse intestineEric C Cheung, Pearl Lee, Fatih Ceteci, et al.Cancer Gene Therapy|September 21, 2018
Correction: Increasing the bactofection capacity of a mammalian expression vector by removal of the f1 oriSíle A Johnson, Michael J Ormsby, Anne McIntosh, et al.Cancer Gene Therapy|February 21, 2019
Author Correction: Increasing the bactofection capacity of a mammalian expression vector by removal of the f1 oriSíle A Johnson, Michael J Ormsby, Anne McIntosh, et al.Cells|September 27, 2024
<i>C1orf106</i> (<i>INAVA</i>) Is a SMAD3-Dependent TGF-β Target Gene That Promotes Clonogenicity and Correlates with Poor Prognosis in Breast CancerLauren S Strathearn, Lindsay C Spender, Christina Schoenherr, et al.Nature Metabolism|August 5, 2020
Polyamine pathway activity promotes cysteine essentiality in cancer cellsTong Zhang, Christin Bauer, Alice C Newman, et al.Cancer Research|February 21, 2006
Runx2 and MYC collaborate in lymphoma development by suppressing apoptotic and growth arrest pathways in vivoKaren Blyth, François Vaillant, Linda Hanlon, et al.Blood Cells, Molecules & Diseases|March 10, 2009
Runx1 promotes B-cell survival and lymphoma developmentKaren Blyth, Nicholas Slater, Linda Hanlon, et al.Small Gtpases|June 23, 2020
Selection of established tumour cells through narrow diameter micropores enriches for elevated Ras/Raf/MEK/ERK MAPK signalling and enhanced tumour growthDominika A Rudzka, Susan Mason, Matthew Neilson, et al.Nature|December 18, 2012
Serine starvation induces stress and p53-dependent metabolic remodelling in cancer cellsOliver D K Maddocks, Celia R Berkers, Susan M Mason, et al.Pageof 15