Eukaryotic protein kinases (EPKs) regulate almost every biological process and have evolved to be dynamic molecular switches; this is in stark contrast to metabolic enzymes, which have evolved to be efficient catalysts. In particular, the highly conserved active site of every EPK is dynamically and transiently assembled by a process that is highly regulated and unique for every protein kinase. We review here the essential features of the kinase core, focusing on the conserved motifs and residues that are embedded in every kinase. We explore, in particular, how the hydrophobic core architecture specifically drives the dynamic assembly of the regulatory spine and consequently the organization of the active site where the γ-phosphate of ATP is...
Abstract: Phosphorylation on the activation loop of AGC kinases is typically mediated by PDK1. The p...
Protein kinases have very dynamic structures and their functionality strongly depends on their dynam...
The functional diversity of kinases enables specificity in cellular signal transduction. Yet how mor...
Eukaryotic protein kinases (EPKs) regulate numerous signaling processes by phosphorylating targeted ...
Eukaryotic protein kinases (EPKs) constitute a class of allosteric switches that mediate a myriad of...
Protein kinases have evolved in eukaryotes to be highly dynamic molecular switches that regulate a p...
<div><p>Eukaryotic protein kinases (EPKs) regulate numerous signaling processes by phosphorylating t...
Eukaryotic protein kinases (EPKs) regulate numerous signaling processes by phosphorylating targeted ...
Eukaryotic protein kinases (EPKs) regulate numerous signaling processes by phosphorylating targeted ...
Statistical analysis of the functional constraints acting on eukaryotic protein kinases (EPKs) and o...
Eukaryotic protein kinases evolved as a family of highly dynamic molecules with strictly organized i...
Eukaryotic protein kinases regulate most cellular functions by phosphorylating targeted protein subs...
<p>(A) The conserved EPK structural core is shown mapped on the catalytic subunit of PKA (PDB ID: 1A...
A new model of kinase regulation based on the assembly of hydrophobic spines has been proposed. Chan...
Since publication of the crystal structure of protein kinase (PK)A three decades ago, a structural p...
Abstract: Phosphorylation on the activation loop of AGC kinases is typically mediated by PDK1. The p...
Protein kinases have very dynamic structures and their functionality strongly depends on their dynam...
The functional diversity of kinases enables specificity in cellular signal transduction. Yet how mor...
Eukaryotic protein kinases (EPKs) regulate numerous signaling processes by phosphorylating targeted ...
Eukaryotic protein kinases (EPKs) constitute a class of allosteric switches that mediate a myriad of...
Protein kinases have evolved in eukaryotes to be highly dynamic molecular switches that regulate a p...
<div><p>Eukaryotic protein kinases (EPKs) regulate numerous signaling processes by phosphorylating t...
Eukaryotic protein kinases (EPKs) regulate numerous signaling processes by phosphorylating targeted ...
Eukaryotic protein kinases (EPKs) regulate numerous signaling processes by phosphorylating targeted ...
Statistical analysis of the functional constraints acting on eukaryotic protein kinases (EPKs) and o...
Eukaryotic protein kinases evolved as a family of highly dynamic molecules with strictly organized i...
Eukaryotic protein kinases regulate most cellular functions by phosphorylating targeted protein subs...
<p>(A) The conserved EPK structural core is shown mapped on the catalytic subunit of PKA (PDB ID: 1A...
A new model of kinase regulation based on the assembly of hydrophobic spines has been proposed. Chan...
Since publication of the crystal structure of protein kinase (PK)A three decades ago, a structural p...
Abstract: Phosphorylation on the activation loop of AGC kinases is typically mediated by PDK1. The p...
Protein kinases have very dynamic structures and their functionality strongly depends on their dynam...
The functional diversity of kinases enables specificity in cellular signal transduction. Yet how mor...