Protein tyrosine kinase (PTK) signaling can be regarded as a hallmark of multi-cellular organisms and its deregulation causes a variety of complex diseases in human including cancer. Therefore, it is essential to understand how each individual tyrosine phosphorylating enzyme is able to recognize and distinguish its target proteins. This task still remains challenging due to overlapping substrate specificity, magnitude differences in enzymatic activity, and cell type dependent expression levels of PTKs. There are 90 human PTKs with 58 receptor-type PTKs and 32 non-receptor type PTKs (NRTKs) thereof. Saccharomyces cerevisiae is lacking PTKs and it was shown that, when individually expressed at low levels, active human NRTKs phosphorylate yeas...
Protein Tyrosine Kinases (PTKs) are crucial enzymes which aid in cellular signal transduction pathwa...
Both protein kinases and phosphatases represent distinct large protein families, whose members are s...
Protein phosphorylation is estimated to affect 30% of the proteome and is a major regulatory mechani...
Systematic assessment of tyrosine kinase-substrate relationships is fundamental to a better understa...
Post-translational protein modifications, such as tyrosine phosphorylation, regulate protein-protein...
Protein kinases play an important role in cellular signaling pathways and their dysregulation leads ...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
A platform has been built combining chemical genetics and bioinformatics to screen the proteome for ...
SummaryRegulatory protein phosphorylation controls normal and pathophysiological signaling in eukary...
Phosphorylation is a universal mechanism for regulating cell behavior in eukaryotes. Although protei...
Phosphorylation is one of the most pivotal post-translational modifications that transmit intracellu...
Signal transduction is indispensible for control of cell growth, differentiation, metabolism, and mi...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
Protein Tyrosine Kinases (PTKs) are crucial enzymes which aid in cellular signal transduction pathwa...
Protein Tyrosine Kinases (PTKs) are crucial enzymes which aid in cellular signal transduction pathwa...
Both protein kinases and phosphatases represent distinct large protein families, whose members are s...
Protein phosphorylation is estimated to affect 30% of the proteome and is a major regulatory mechani...
Systematic assessment of tyrosine kinase-substrate relationships is fundamental to a better understa...
Post-translational protein modifications, such as tyrosine phosphorylation, regulate protein-protein...
Protein kinases play an important role in cellular signaling pathways and their dysregulation leads ...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
A platform has been built combining chemical genetics and bioinformatics to screen the proteome for ...
SummaryRegulatory protein phosphorylation controls normal and pathophysiological signaling in eukary...
Phosphorylation is a universal mechanism for regulating cell behavior in eukaryotes. Although protei...
Phosphorylation is one of the most pivotal post-translational modifications that transmit intracellu...
Signal transduction is indispensible for control of cell growth, differentiation, metabolism, and mi...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
Protein Tyrosine Kinases (PTKs) are crucial enzymes which aid in cellular signal transduction pathwa...
Protein Tyrosine Kinases (PTKs) are crucial enzymes which aid in cellular signal transduction pathwa...
Both protein kinases and phosphatases represent distinct large protein families, whose members are s...
Protein phosphorylation is estimated to affect 30% of the proteome and is a major regulatory mechani...