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PreviewIssue DateTitleAuthor(s)
2013Targeting acute myeloid leukemia by dual inhibition of PI3K signaling and Cdk9-mediated Mcl-1 transcriptionThomas, D.; Powell, J.; Vergez, F.; Segal, D.; Nguyen, N.; Baker, A.; Teh, T.; Barry, E.; Sarry, J.; Lee, E.; Nero, T.; Jabbour, A.; Giovanna, P.; Green, B.; Manenti, S.; Glaser, S.; Parker, M.; Lopez, A.; Ekert, P.; Lock, R.; et al.
2011Heritable GATA2 mutations associated with familial myelodysplastic syndrome and acute myeloid leukemiaHahn, C.; Chong, C.; Carmichael, C.; Wilkins, E.; Brautigan, P.; Li, X.; Babic, M.; Lin, M.; Carmagnac, A.; Lee, Y.; Kok, C.; Gagliardi, L.; Friend, K.; Ekert, P.; Butcher, C.; Brown, A.; Lewis, I.; To, L.; Timms, A.; Storek, J.; et al.
2012Rac2-MRC-cIII-generated ROS cause genomic instability in chronic myeloid leukemia stem cells and primitive progenitorsNieborowska-Skorska, M.; Kopinski, P.; Ray, R.; Hoser, G.; Ngaba, D.; Flis, S.; Cramer, K.; Reddy, M.; Koptyra, M.; Penserga, T.; Glodkowska-Mrowka, E.; Bolton, E.; Holyoake, T.; Eaves, C.; Cerny-Reiterer, S.; Valent, P.; Hochhaus, A.; Hughes, T.; Van der Kuip, H.; Sattler, M.; et al.
2012Loss-of-function germline GATA2 mutations in patients with MDS/AML or MonoMAC syndrome and primary lymphedema reveal a key role for GATA2 in the lymphatic vasculatureKazenwadel, J.; Secker, G.; Liu, Y.; Rosenfeld, J.; Wildin, R.; Cuellar-Rodriguez, J.; Hsu, A.; Dyack, S.; Fernandez, C.; Chong, C.; Babic, M.; Bardy, P.; Shimamura, A.; Zhang, M.; Walsh, T.; Holland, S.; Hickstein, D.; Horwitz, M.; Hahn, C.; Scott, H.; et al.
2017Inhibition of Pol I transcription treats murine and human AML by targeting the leukemia-initiating cell populationHein, N.; Cameron, D.; Hannan, K.; Nguyen, N.; Fong, C.; Sornkom, J.; Wall, M.; Pavy, M.; Cullinane, C.; Diesch, J.; Devlin, J.; George, A.; Sanij, E.; Quin, J.; Poortinga, G.; Verbrugge, I.; Baker, A.; Drygin, D.; Harrison, S.; Rozario, J.; et al.