AbstractProtein kinases operate in a large number of distinct signaling pathways, where the tight regulation of their catalytic activity is crucial to the development and maintenance of eukaryotic organisms. The catalytic domains of different kinases adopt strikingly similar structures when they are active. By contrast, crystal structures of inactive kinases have revealed a remarkable plasticity in the kinase domain that allows the adoption of distinct conformations in response to interactions with specific regulatory domains or proteins
SummaryOnly a small percentage of protein kinases have been shown to adopt a distinct inactive ATP-b...
The human proteome is rich with protein kinases, and this richness has made the kinase of crucial im...
The aim of this thesis consisted in the identification of key amino acids residues governing the tra...
AbstractProtein kinases operate in a large number of distinct signaling pathways, where the tight re...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Summaryp21-activated kinases have been classified into two groups based on their domain architecture...
AbstractProtein kinases regulate cell signaling by phosphorylating their substrates in response to e...
Protein kinases are key components in cellular signalling pathways as they carry out the phosphoryla...
AbstractProtein kinases catalyse phospho transfer reactions from ATP to serine, threonine or tyrosin...
Eukaryotic protein kinases evolved as a family of highly dynamic molecules with strictly organized i...
In this issue, Lietha and colleagues (2007) report the structure of focal adhesion kinase (FAK) and ...
SummaryOnly a small percentage of protein kinases have been shown to adopt a distinct inactive ATP-b...
The human proteome is rich with protein kinases, and this richness has made the kinase of crucial im...
The aim of this thesis consisted in the identification of key amino acids residues governing the tra...
AbstractProtein kinases operate in a large number of distinct signaling pathways, where the tight re...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Protein kinases phosphorylate several cellular proteins providing control mechanisms for various sig...
Summaryp21-activated kinases have been classified into two groups based on their domain architecture...
AbstractProtein kinases regulate cell signaling by phosphorylating their substrates in response to e...
Protein kinases are key components in cellular signalling pathways as they carry out the phosphoryla...
AbstractProtein kinases catalyse phospho transfer reactions from ATP to serine, threonine or tyrosin...
Eukaryotic protein kinases evolved as a family of highly dynamic molecules with strictly organized i...
In this issue, Lietha and colleagues (2007) report the structure of focal adhesion kinase (FAK) and ...
SummaryOnly a small percentage of protein kinases have been shown to adopt a distinct inactive ATP-b...
The human proteome is rich with protein kinases, and this richness has made the kinase of crucial im...
The aim of this thesis consisted in the identification of key amino acids residues governing the tra...