Oncotarget · 2017 · 49 citations · 18 references
MELK play critical roles in human carcinogenesis through activation of cell proliferation, inhibition of apoptosis and maintenance of stemness. Therefore, MELK is a promising therapeutic target for a wide range of cancers. Although p21 is a well-known p53-downstream gene, we found that treatment with a potent MELK inhibitor, OTS167, could induce p21 protein expression in cancer cell lines harboring loss-of-function <i>TP53</i> mutations. We also confirmed that MELK knockdown by siRNA induced the p21 expression in p53-deficient cancer cell lines and caused the cell cycle arrest at G1 phase. Further analysis indicated that FOXO1 and FOXO3, two known transcriptional regulators of p21, were phosphorylated by MELK and thus be involved in the induction of p21 after MELK inhibition. Collectively, our herein findings suggest that MELK inhibition may be effective for human cancers even if <i>TP53</i> is mutated.
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Requirement for p53 and p21 to Sustain G <sub>2</sub> Arrest After DNA Damage
Fred Bunz, Annie Dutriaux, Christoph Lengauer et al. · Science · 1998 · 2.8K citations
Induction of p21 by p53 following DNA damage inhibits both Cdk4 and Cdk2 activities
Guangan He, Zahid H. Siddik, Zai-Feng Huang et al. · Oncogene · 2005 · 265 citations