Autophosphorylation of a critical residue in the activation loop of several protein kinases is an essential maturation event required for full enzyme activity. However, the molecular mechanism by which this happens is unknown. We addressed this question for two dual-specificity tyrosine-phosphorylation-regulated protein kinases (DYRKs), as they autophosphorylate their activation loop on an essential tyrosine but phosphorylate their substrates on serine and threonine. Here we demonstrate that autophosphorylation of the critical activation-loop tyrosine is intramolecular and mediated by the nascent kinase passing through a transitory intermediate form. This DYRK intermediate differs in residue and substrate specificity, as well as sensitivity...
Glycogen synthase kinase 3 (GSK3), a key component of the insulin and wnt signaling pathways, is unu...
AbstractThe mammalian DYRK (dual specificity tyrosine phosphorylated and regulated kinase) family of...
Protein kinases play central roles in diverse cellular signal transduction pathways via their substr...
Autophosphorylation of a critical residue in the activation loop of several protein kinases is an es...
SummaryAutophosphorylation of a critical residue in the activation loop of several protein kinases i...
DYRK-family kinases employ an intramolecular mechanism to autophosphorylate a critical tyrosine resi...
SummaryDual-specificity tyrosine-(Y)-phosphorylation-regulated kinases (DYRKs) play key roles in bra...
DYRK-family kinases employ an intramolecular mechanism to autophosphorylate a critical tyrosine resi...
DYRK-family kinases employ an intramolecular mechanism to autophosphorylate a critical tyrosine resi...
Dual-specificity tyrosine-(Y)-phosphorylation-regulated kinases (DYRKs) play key roles in brain deve...
Dual-specificity tyrosine-(Y)-phosphorylation-regulated kinases (DYRKs) play key roles in brain deve...
<div><p>DYRK-family kinases employ an intramolecular mechanism to autophosphorylate a critical tyros...
Autophosphorylation in the activation loop is a common mechanism regulating the activities of protei...
The multitude of mechanisms regulating the activity of protein kinases includes phosphorylation of a...
Autophosphorylation of amino-acid residues is part of the folding process of various protein kinases...
Glycogen synthase kinase 3 (GSK3), a key component of the insulin and wnt signaling pathways, is unu...
AbstractThe mammalian DYRK (dual specificity tyrosine phosphorylated and regulated kinase) family of...
Protein kinases play central roles in diverse cellular signal transduction pathways via their substr...
Autophosphorylation of a critical residue in the activation loop of several protein kinases is an es...
SummaryAutophosphorylation of a critical residue in the activation loop of several protein kinases i...
DYRK-family kinases employ an intramolecular mechanism to autophosphorylate a critical tyrosine resi...
SummaryDual-specificity tyrosine-(Y)-phosphorylation-regulated kinases (DYRKs) play key roles in bra...
DYRK-family kinases employ an intramolecular mechanism to autophosphorylate a critical tyrosine resi...
DYRK-family kinases employ an intramolecular mechanism to autophosphorylate a critical tyrosine resi...
Dual-specificity tyrosine-(Y)-phosphorylation-regulated kinases (DYRKs) play key roles in brain deve...
Dual-specificity tyrosine-(Y)-phosphorylation-regulated kinases (DYRKs) play key roles in brain deve...
<div><p>DYRK-family kinases employ an intramolecular mechanism to autophosphorylate a critical tyros...
Autophosphorylation in the activation loop is a common mechanism regulating the activities of protei...
The multitude of mechanisms regulating the activity of protein kinases includes phosphorylation of a...
Autophosphorylation of amino-acid residues is part of the folding process of various protein kinases...
Glycogen synthase kinase 3 (GSK3), a key component of the insulin and wnt signaling pathways, is unu...
AbstractThe mammalian DYRK (dual specificity tyrosine phosphorylated and regulated kinase) family of...
Protein kinases play central roles in diverse cellular signal transduction pathways via their substr...