Synthetic lethal targeting of oncogenic transcription factors in acute leukemia by PARP inhibitors


Autoria(s): Esposito, Maria Teresa; Zhao, Lu; Fung, Tsz Kan; Rane, Jayant K; Wilson, Amanda; Martin, Nadine; Gil, Jesus; Leung, Anskar Y; Ashworth, Alan; Eric So, Chi Wai
Data(s)

23/11/2015

Resumo

Acute myeloid leukemia (AML) is mostly driven by oncogenic transcription factors, which have been classically viewed as intractable targets using small molecule inhibitor approaches. Here, we demonstrate that AML driven by repressive transcription factors including AML1-ETO and PML-RARα are extremely sensitive to Poly (ADP-ribose) Polymerase (PARP) inhibitor (PARPi), in part due to their suppressed expression of key homologous recombination genes and thus compromised DNA damage response (DDR). In contrast, leukemia driven by MLL fusions with dominant transactivation ability is proficient in DDR and insensitive to PARP inhibition. Intriguing, depletion of an MLL downstream target, Hoxa9 that activates expression of various HR genes, impairs DDR and sensitizes MLL leukemia to PARPi. Conversely, Hoxa9 over-expression confers PARPi resistance to AML1-ETO and PML-RARα transformed cells. Together, these studies describe a potential utility of PARPi-induced synthetic lethality for leukemia treatment and reveal a novel molecular mechanism governing PARPi sensitivity in AML.

Formato

text

Identificador

http://roar.uel.ac.uk/5088/1/Esposito_merged%20file%202507.pdf

Esposito, Maria Teresa and Zhao, Lu and Fung, Tsz Kan and Rane, Jayant K and Wilson, Amanda and Martin, Nadine and Gil, Jesus and Leung, Anskar Y and Ashworth, Alan and Eric So, Chi Wai (2015) ‘Synthetic lethal targeting of oncogenic transcription factors in acute leukemia by PARP inhibitors’, Nature Medicine, 21(12), pp. 1481-1490. (10.1038/nm.3993 <http://dx.doi.org/10.1038/nm.3993>).

Publicador

Nature Publishing Group

Relação

http://dx.doi.org/10.1038/nm.3993

http://roar.uel.ac.uk/5088/

Tipo

Article

PeerReviewed