SummaryMultidomain proteins incorporating interaction domains are central to regulation of cellular processes. The elucidation of structural organization and mechanistic insights into many of these proteins, however, remain challenging due to their inherent flexibility. Here, we describe the organization and function of four interaction domains in PLCγ1 using a combination of structural biology and biochemical approaches. Intramolecular interactions within the regulatory region center on the cSH2 domain, the only domain that also interacts with the PLC-core. In the context of fibroblast growth-factor receptor signaling, the coordinated involvement of nSH2 and cSH2 domains mediates efficient phosphorylation of PLCγ1 resulting in the interrup...
Selective ligand recognition by modular protein interaction domains is a primary determinant of spec...
Recognition of phosphotyrosine by SH2 domain-containing proteins is a key feature of signal transduc...
AbstractElucidating protein–protein interactions has been a central feature to understanding intrace...
SummaryMultidomain proteins incorporating interaction domains are central to regulation of cellular ...
Multidomain proteins incorporating interaction domains are central to regulation of cellular process...
Phosphatidylinositol phospholipase Cγ (PLCγ) is an intracellular membrane-associated second messenge...
AbstractThe heterotrimeric G-protein α-chain Gαp plays a critical role mediating receptor-linked act...
G protein βγ subunits regulate the activity, via direct interaction, of a large number of downstream...
AbstractMany of the signaling pathways and regulatory systems in eukaryotic cells are controlled by ...
Numerous receptor tyrosine kinases and immune receptors activate phospholipase C-γ (PLC-γ) isozymes ...
BACKGROUND: PLCγ enzymes are key nodes in cellular signal transduction and their mutated and rare va...
SH3 and WW domains are involved in a variety of intracellular signaling pathways. Recent work has sh...
Graduation date: 2008Phospholipase C-β (PLC-β) isozymes are key effectors in G protein-coupled\ud si...
In this issue of Structure, Bunney and colleagues use a combination of NMR, SAXS, crystallography, I...
SH2 domains recognize phosphotyrosine (pY)-containing peptide ligands and play key roles in the regu...
Selective ligand recognition by modular protein interaction domains is a primary determinant of spec...
Recognition of phosphotyrosine by SH2 domain-containing proteins is a key feature of signal transduc...
AbstractElucidating protein–protein interactions has been a central feature to understanding intrace...
SummaryMultidomain proteins incorporating interaction domains are central to regulation of cellular ...
Multidomain proteins incorporating interaction domains are central to regulation of cellular process...
Phosphatidylinositol phospholipase Cγ (PLCγ) is an intracellular membrane-associated second messenge...
AbstractThe heterotrimeric G-protein α-chain Gαp plays a critical role mediating receptor-linked act...
G protein βγ subunits regulate the activity, via direct interaction, of a large number of downstream...
AbstractMany of the signaling pathways and regulatory systems in eukaryotic cells are controlled by ...
Numerous receptor tyrosine kinases and immune receptors activate phospholipase C-γ (PLC-γ) isozymes ...
BACKGROUND: PLCγ enzymes are key nodes in cellular signal transduction and their mutated and rare va...
SH3 and WW domains are involved in a variety of intracellular signaling pathways. Recent work has sh...
Graduation date: 2008Phospholipase C-β (PLC-β) isozymes are key effectors in G protein-coupled\ud si...
In this issue of Structure, Bunney and colleagues use a combination of NMR, SAXS, crystallography, I...
SH2 domains recognize phosphotyrosine (pY)-containing peptide ligands and play key roles in the regu...
Selective ligand recognition by modular protein interaction domains is a primary determinant of spec...
Recognition of phosphotyrosine by SH2 domain-containing proteins is a key feature of signal transduc...
AbstractElucidating protein–protein interactions has been a central feature to understanding intrace...