Cdc25B protein phosphatase represents an attractive potential therapeutic target for small molecule intervention because of its central role in positively regulating cyclin dependent kinases and thus cell proliferation, as well as its elevated levels observed in many human tumors. Among the most potent previously identified Cdc25 inhibitors have been quinoline quinones, which have a rich legacy as therapeutic agents but have also been associated with nonspecific interactions. In this study, we have interrogated the structure-activity relationship of a focused series of C2-, C3-, or C4-modified quinoline-5,8-quinones on Cdc25B inhibition in vitro. Substitution at the C3-position in this small chemical series were slightly superior to substit...
abstract: Many natural and synthetic quinones have shown biological and pharmacological activity. So...
Quinoid inhibitors of Cdc25B were designed based on the Linear Combination of Atomic Potentials (LCA...
CDC25 dual-specificity phosphatases are essential key regulators of eukaryotic cell cycle progressio...
Cdc25B protein phosphatase represents an attractive potential therapeutic target for small molecule ...
<p>The cell division cycle 25 phosphatases (CDC25A, B, and C; E.C. 3.1.3.48) are key regulator of th...
none3noInhibition of Cdc25 phosphatases is a strategy for the discovery and development of novel ant...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Small molecules provide powerful tools to interrogate biological pathways but many important pathway...
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...
Intracellular reduction and oxidation pathways regulate protein functionality through both reversibl...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Cdc25 dual-specificity phosphatases coordinate cell cycle progression and cellular signaling. Conseq...
Cell division cycle (CDC) 25 proteins are key phosphatases regulating cell cycle transition and prol...
International audienceCell division cycle (CDC) 25 proteins are key phosphatases regulating cell cyc...
abstract: Many natural and synthetic quinones have shown biological and pharmacological activity. So...
Quinoid inhibitors of Cdc25B were designed based on the Linear Combination of Atomic Potentials (LCA...
CDC25 dual-specificity phosphatases are essential key regulators of eukaryotic cell cycle progressio...
Cdc25B protein phosphatase represents an attractive potential therapeutic target for small molecule ...
<p>The cell division cycle 25 phosphatases (CDC25A, B, and C; E.C. 3.1.3.48) are key regulator of th...
none3noInhibition of Cdc25 phosphatases is a strategy for the discovery and development of novel ant...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Small molecules provide powerful tools to interrogate biological pathways but many important pathway...
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...
Intracellular reduction and oxidation pathways regulate protein functionality through both reversibl...
Cdc25A and Cdc25B dual-specificity phosphatases are key regulators of cell cycle transition and prol...
Cdc25 dual-specificity phosphatases coordinate cell cycle progression and cellular signaling. Conseq...
Cell division cycle (CDC) 25 proteins are key phosphatases regulating cell cycle transition and prol...
International audienceCell division cycle (CDC) 25 proteins are key phosphatases regulating cell cyc...
abstract: Many natural and synthetic quinones have shown biological and pharmacological activity. So...
Quinoid inhibitors of Cdc25B were designed based on the Linear Combination of Atomic Potentials (LCA...
CDC25 dual-specificity phosphatases are essential key regulators of eukaryotic cell cycle progressio...