Cell division cycle 25 (Cdc25) proteins are highly conserved dual specificity phosphatases that regulate cyclin-dependent kinases and represent attractive drug targets for anticancer therapies. To discover more potent and diverse inhibitors of Cdc25 biological activity, virtual screening was performed by docking 2.1 million compounds into the Cdc25B active site. An initial subset of top-ranked compounds was selected and assayed, and 15 were found to have enzyme inhibition activity at micromolar concentration. Among these, four structurally diverse inhibitors with a different inhibition profile were found to inhibit human MCF-7, PC-3, and K562 cancer cell proliferation and significantly affect the cell cycle progression. A subsequent hierarc...
The Cdc25 phosphatases (Cdc25A, Cdc25B, and Cdc25C in humans), which are responsible for dephosphory...
The Cdc25 phosphatases (Cdc25A, Cdc25B, and Cdc25C in humans), which are responsible for dephosphory...
IMPORTANCE OF THE FIELD: The cell division cycle 25 (Cdc25) family of proteins are highly conserv...
Cell division cycle 25 (Cdc25) proteins are highly conserved dual specificity phosphatases that regu...
Cell division cycle 25 (Cdc25) proteins are highly conserved dual specificity phosphatases that regu...
The cell division cycle 25 (Cdc25) family of proteins are highly conserved dual specificity phosphat...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
CDC25 phosphatases play a key role in cell cycle transitions and are important targets for cancer th...
The Cdc25 dual specificity phosphatases have central roles in coordinating cellular signaling proces...
The University of Pittsburgh Molecular Library Screening Center (Pittsburgh, PA) conducted a screen ...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Cell division cycle 25 (CDC25) proteins are key phosphatases regulating cell cycle transition and pr...
ABSTRACT: CDC25 phosphatases are key cell cycle regulators and represent very attractive but challen...
The Cdc25 phosphatases (Cdc25A, Cdc25B, and Cdc25C in humans), which are responsible for dephosphory...
The Cdc25 phosphatases (Cdc25A, Cdc25B, and Cdc25C in humans), which are responsible for dephosphory...
IMPORTANCE OF THE FIELD: The cell division cycle 25 (Cdc25) family of proteins are highly conserv...
Cell division cycle 25 (Cdc25) proteins are highly conserved dual specificity phosphatases that regu...
Cell division cycle 25 (Cdc25) proteins are highly conserved dual specificity phosphatases that regu...
The cell division cycle 25 (Cdc25) family of proteins are highly conserved dual specificity phosphat...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
CDC25 phosphatases play a key role in cell cycle transitions and are important targets for cancer th...
The Cdc25 dual specificity phosphatases have central roles in coordinating cellular signaling proces...
The University of Pittsburgh Molecular Library Screening Center (Pittsburgh, PA) conducted a screen ...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Cell division cycle 25 (CDC25) proteins are key phosphatases regulating cell cycle transition and pr...
ABSTRACT: CDC25 phosphatases are key cell cycle regulators and represent very attractive but challen...
The Cdc25 phosphatases (Cdc25A, Cdc25B, and Cdc25C in humans), which are responsible for dephosphory...
The Cdc25 phosphatases (Cdc25A, Cdc25B, and Cdc25C in humans), which are responsible for dephosphory...
IMPORTANCE OF THE FIELD: The cell division cycle 25 (Cdc25) family of proteins are highly conserv...