<p>The cell division cycle 25 phosphatases (CDC25A, B, and C; E.C. 3.1.3.48) are key regulator of the cell cycle in human cells. Their aberrant expression has been associated with the insurgence and development of various types of cancer, and with a poor clinical prognosis. Therefore, CDC25 phosphatases are a valuable target for the development of small molecule inhibitors of therapeutic relevance. Here, we used an integrated strategy mixing organic chemistry with biological investigation and molecular modeling to study novel quinonoid derivatives as CDC25 inhibitors. The most promising molecules proved to inhibit CDC25 isoforms at single digit micromolar concentration, becoming valuable tools in chemical biology investigations and profitab...
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...
CDC25 phosphatases are important regulators of the cell cycle and represent promising targets for an...
The cell division cycle 25 phosphatases (CDC25A, B, and C; E.C. 3.1.3.48) are key regulator of the c...
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...
The cell division cycle 25 (Cdc25) family of proteins are highly conserved dual specificity phosphat...
Small molecules provide powerful tools to interrogate biological pathways but many important pathway...
none3noInhibition of Cdc25 phosphatases is a strategy for the discovery and development of novel ant...
Cell division cycle 25 (CDC25) proteins are key phosphatases regulating cell cycle transition and pr...
The Cdc25 dual specificity phosphatases have central roles in coordinating cellular signaling proces...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Cdc25B protein phosphatase represents an attractive potential therapeutic target for small molecule ...
Protein phosphorylation/dephosphorylation regulates crucial cel- lular processes, such as cell growt...
CDC25 phosphatases play a key role in cell cycle transitions and are important targets for cancer th...
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...
CDC25 phosphatases are important regulators of the cell cycle and represent promising targets for an...
The cell division cycle 25 phosphatases (CDC25A, B, and C; E.C. 3.1.3.48) are key regulator of the c...
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...
The cell division cycle 25 (Cdc25) family of proteins are highly conserved dual specificity phosphat...
Small molecules provide powerful tools to interrogate biological pathways but many important pathway...
none3noInhibition of Cdc25 phosphatases is a strategy for the discovery and development of novel ant...
Cell division cycle 25 (CDC25) proteins are key phosphatases regulating cell cycle transition and pr...
The Cdc25 dual specificity phosphatases have central roles in coordinating cellular signaling proces...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Cdc25B protein phosphatase represents an attractive potential therapeutic target for small molecule ...
Protein phosphorylation/dephosphorylation regulates crucial cel- lular processes, such as cell growt...
CDC25 phosphatases play a key role in cell cycle transitions and are important targets for cancer th...
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...
CDC25 phosphatases are important regulators of the cell cycle and represent promising targets for an...