Despite the importance of kinases' catalytic activity regulation in cell signaling, detailed mechanisms underlying their activity regulation are poorly understood. Herein, using insulin-like growth factor 1 receptor kinase (IGF-1RK) as a model, the mechanisms of kinase regulation by its activation loop (A-loop) phosphorylation were investigated through molecular dynamics (MD) and alchemical free energy simulations. Analyses of the simulation results and free energy landscapes determined for the entire catalytic cycle of the kinase revealed that A-loop phosphorylation affects each step in the IGF-1RK catalytic cycle, including conformational change, substrate binding/product release and catalytic phosphoryl transfer. Specifically, the confor...
AbstractWe have characterized a large-scale inactive-to-active conformational change in the activati...
Protein kinases are the enzymes in the cell that catalyze phosphorylation reactions. They are essent...
<div><p>The insulin-family proteins bind to their own receptors, but insulin-like growth factor II (...
Despite the importance of kinases' catalytic activity regulation in cell signaling, detailed mechani...
Background: Insulin receptor kinase (IRK) and Insulin-like growth factor 1 receptor kinase (IGF-1RK)...
Background: Insulin receptor kinase (IRK) and Insulin-like growth factor 1 receptor kinase (IGF-1RK)...
Background: Insulin receptor kinase (IRK) and Insulin-like growth factor 1 receptor kinase (IGF-1RK)...
The catalytic and allosteric mechanisms of insulin receptor kinase (IRK) are investigated by a combi...
AbstractBackground: The insulin-like growth-factor-1 (IGF-1) receptor, which is widely expressed in ...
AbstractBackground: The insulin-like growth-factor-1 (IGF-1) receptor, which is widely expressed in ...
AbstractWe have characterized a large-scale inactive-to-active conformational change in the activati...
We have characterized a large-scale inactive-to-active conformational change in the activation-loop ...
We have characterized a large-scale inactive-to-active conformational change in the activation-loop ...
We have characterized a large-scale inactive-to-active conformational change in the activation-loop ...
A long-standing mystery shrouds the mechanism by which catalytically repressed receptor tyrosine kin...
AbstractWe have characterized a large-scale inactive-to-active conformational change in the activati...
Protein kinases are the enzymes in the cell that catalyze phosphorylation reactions. They are essent...
<div><p>The insulin-family proteins bind to their own receptors, but insulin-like growth factor II (...
Despite the importance of kinases' catalytic activity regulation in cell signaling, detailed mechani...
Background: Insulin receptor kinase (IRK) and Insulin-like growth factor 1 receptor kinase (IGF-1RK)...
Background: Insulin receptor kinase (IRK) and Insulin-like growth factor 1 receptor kinase (IGF-1RK)...
Background: Insulin receptor kinase (IRK) and Insulin-like growth factor 1 receptor kinase (IGF-1RK)...
The catalytic and allosteric mechanisms of insulin receptor kinase (IRK) are investigated by a combi...
AbstractBackground: The insulin-like growth-factor-1 (IGF-1) receptor, which is widely expressed in ...
AbstractBackground: The insulin-like growth-factor-1 (IGF-1) receptor, which is widely expressed in ...
AbstractWe have characterized a large-scale inactive-to-active conformational change in the activati...
We have characterized a large-scale inactive-to-active conformational change in the activation-loop ...
We have characterized a large-scale inactive-to-active conformational change in the activation-loop ...
We have characterized a large-scale inactive-to-active conformational change in the activation-loop ...
A long-standing mystery shrouds the mechanism by which catalytically repressed receptor tyrosine kin...
AbstractWe have characterized a large-scale inactive-to-active conformational change in the activati...
Protein kinases are the enzymes in the cell that catalyze phosphorylation reactions. They are essent...
<div><p>The insulin-family proteins bind to their own receptors, but insulin-like growth factor II (...