Molecular Cancer Therapeutics · 2014 · 101 citations · 36 references
Tumor BiologyMedicineMalignant Blood DisorderImmunologyCell DeathRnap IiCancer GenomicsImmune Checkpoint InhibitorSer 2Stress ResponseCell BiologyAnti-cancer AgentTumor SuppressorImmunotherapyOncologyRadiation OncologyCancer Research
DNA-dependent RNA polymerase II (RNAP II) largest subunit RPB1 C-terminal domain (CTD) kinases, including CDK9, are serine/threonine kinases known to regulate transcriptional initiation and elongation by phosphorylating Ser 2, 5, and 7 residues on CTD. Given the reported dysregulation of these kinases in some cancers, we asked whether inhibiting CDK9 may induce stress response and preferentially kill tumor cells. Herein, we describe a potent CDK9 inhibitor, LY2857785, that significantly reduces RNAP II CTD phosphorylation and dramatically decreases MCL1 protein levels to result in apoptosis in a variety of leukemia and solid tumor cell lines. This molecule inhibits the growth of a broad panel of cancer cell lines, and is particularly efficacious in leukemia cells, including orthotopic leukemia preclinical models as well as in ex vivo acute myeloid leukemia and chronic lymphocytic leukemia patient tumor samples. Thus, inhibition of CDK9 may represent an interesting approach as a cancer therapeutic target, especially in hematologic malignancies.
36
A transforming mutation in the pleckstrin homology domain of AKT1 in cancer
John D. Carpten, Andrew L. Faber, Candice L. Horn et al. · Nature · 2007 · 1.3K citations
CDK8 is a colorectal cancer oncogene that regulates β-catenin activity
Ron Firestein, Adam J. Bass, So Young Kim et al. · Nature · 2008 · 670 citations · Full text
P-TEFb kinase is required for HIV Tat transcriptional activation in vivo and in vitro
Helena Mancebo, Gary Lee, John A. Flygare et al. · Genes & Development · 1997 · 536 citations · Full text
Transcribing RNA Polymerase II Is Phosphorylated at CTD Residue Serine-7
Rob D. Chapman, Martin Heidemann, Thomas Albert et al. · Science · 2007 · 315 citations