Proper control of cell cycle progression requires the functionality of a small family of activating phosphatases termed Cdc25, which have been implicated in cancer and Alzheimer's disease. These protein tyrosine phosphatases are therefore recognized as attractive molecular targets for small molecules. We review the rationale, approaches, progress and challenges for developing small molecule inhibitors of the Cdc25 family. A number of potential chemical probes are discussed and their characteristics are summarized
AbstractThe Cdc25 phosphatases function as key regulators of the cell cycle during normal eukaryotic...
The cell division cycle 25 phosphatases (CDC25A, B, and C; E.C. 3.1.3.48) are key regulator of the c...
Members of the cell division cycle 25 (Cdc25) family of proteins are highly conserved dual specifici...
Proper control of cell cycle progression requires the functionality of a small family of activating ...
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...
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...
ABSTRACT: CDC25 phosphatases are key cell cycle regulators and represent very attractive but challen...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
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...
CDC25 phosphatases play a key role in cell cycle transitions and are important targets for cancer th...
none3noInhibition of Cdc25 phosphatases is a strategy for the discovery and development of novel ant...
AbstractThe Cdc25 phosphatases function as key regulators of the cell cycle during normal eukaryotic...
The cell division cycle 25 phosphatases (CDC25A, B, and C; E.C. 3.1.3.48) are key regulator of the c...
Members of the cell division cycle 25 (Cdc25) family of proteins are highly conserved dual specifici...
Proper control of cell cycle progression requires the functionality of a small family of activating ...
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...
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...
ABSTRACT: CDC25 phosphatases are key cell cycle regulators and represent very attractive but challen...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
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...
CDC25 phosphatases play a key role in cell cycle transitions and are important targets for cancer th...
none3noInhibition of Cdc25 phosphatases is a strategy for the discovery and development of novel ant...
AbstractThe Cdc25 phosphatases function as key regulators of the cell cycle during normal eukaryotic...
The cell division cycle 25 phosphatases (CDC25A, B, and C; E.C. 3.1.3.48) are key regulator of the c...
Members of the cell division cycle 25 (Cdc25) family of proteins are highly conserved dual specifici...