Systematic assessment of tyrosine kinase-substrate relationships is fundamental to a better understanding of cellular signaling and its profound alterations in human diseases such as cancer. In human cells, such assessments are confounded by complex signaling networks, feedback loops, conditional activity, and intra-kinase redundancy. Here we address this challenge by exploiting the yeast proteome as an in vivo model substrate. We individually expressed 16 human non-receptor tyrosine kinases (NRTKs) in Saccharomyces cerevisiae and identified 3,279 kinase-substrate relationships involving 1,351 yeast phosphotyrosine (pY) sites. Based on the yeast data without prior information, we generated a set of linear kinase motifs and assigned ∼1,300 k...
Background: Complex intracellular signaling networks monitor diverse environmental inputs to evoke a...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
To date, most genome-scale approaches designed to explore kinase pathways have been targeted towards...
Phosphorylation is a universal mechanism for regulating cell behavior in eukaryotes. Although protei...
Protein phosphorylation is estimated to affect 30% of the proteome and is a major regulatory mechani...
Protein phosphorylation is estimated to affect 30% of the proteome and is a major regulatory mechani...
Background: Complex intracellular signaling networks monitor diverse environmental ...
Protein tyrosine kinase (PTK) signaling can be regarded as a hallmark of multi-cellular organisms an...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
SummaryProtein kinases control cellular decision processes by phosphorylating specific substrates. T...
Background: Complex intracellular signaling networks monitor diverse environmental inputs to evoke a...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
To date, most genome-scale approaches designed to explore kinase pathways have been targeted towards...
Phosphorylation is a universal mechanism for regulating cell behavior in eukaryotes. Although protei...
Protein phosphorylation is estimated to affect 30% of the proteome and is a major regulatory mechani...
Protein phosphorylation is estimated to affect 30% of the proteome and is a major regulatory mechani...
Background: Complex intracellular signaling networks monitor diverse environmental ...
Protein tyrosine kinase (PTK) signaling can be regarded as a hallmark of multi-cellular organisms an...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
SummaryProtein kinases control cellular decision processes by phosphorylating specific substrates. T...
Background: Complex intracellular signaling networks monitor diverse environmental inputs to evoke a...
The phosphorylation and dephosphorylation of proteins by kinases and phosphatases constitute an esse...
To date, most genome-scale approaches designed to explore kinase pathways have been targeted towards...