Multiple MAP kinase pathways share components yet initiate distinct biological processes. Signaling fidelity can be maintained by scaffold proteins and restriction of signaling complexes to discreet subcellular locations. For example, the yeast MAP kinase scaffold Ste5 binds to phospholipids produced at the plasma membrane and promotes selective MAP kinase activation. Here we show that Pik1, a phosphatidylinositol 4-kinase that localizes primarily to the Golgi, also regulates MAP kinase specificity but does so independently of Ste5. Pik1 is required for full activation of the MAP kinases Fus3 and Hog1 and represses activation of Kss1. Further, we show by genetic epistasis analysis that Pik1 likely regulates Ste11 and Ste50, components share...
We report an unanticipated system of joint regulation by cyclin-dependent kinase (CDK) and mitogen-a...
To survive, cells must be able to properly sense and respond to information in a fluctuating environ...
Scaffold proteins are believed to enhance specificity in cell signaling when different pathways shar...
The MAP kinase cascade is a ubiquitous eukaryotic signaling module that can be controlled by a diver...
SummaryDistinct MAP kinase pathways in yeast share several signaling components [1, 2], including th...
AbstractBackground: Signal transduction pathways with shared components must be insulated from each ...
SummaryThe scaffold protein Ste5 is required to properly direct signaling through the yeast mating p...
Scaffold proteins organize many MAP kinase path-ways by interacting with several components of these...
Ubiquitination is a post-translational modification that tags proteins for proteasomal degradation. ...
MAPKs are activated by dual phosphorylation. Much of the MAPK Fus3 is monophosphorylated and acts to...
Reversible phosphorylation of the phospholipid phosphatidylinositol (PI) is a key event in the deter...
AbstractScaffold proteins organize many MAP kinase pathways by interacting with several components o...
Many different signaling pathways share common components but nevertheless invoke distinct physiolog...
Distinct MAP kinase pathways in yeast share several signaling components , including the PAK Ste20 a...
Mitogen-activated protein (MAP) kinases comprise a highly conserved family of eukaryotic signal tran...
We report an unanticipated system of joint regulation by cyclin-dependent kinase (CDK) and mitogen-a...
To survive, cells must be able to properly sense and respond to information in a fluctuating environ...
Scaffold proteins are believed to enhance specificity in cell signaling when different pathways shar...
The MAP kinase cascade is a ubiquitous eukaryotic signaling module that can be controlled by a diver...
SummaryDistinct MAP kinase pathways in yeast share several signaling components [1, 2], including th...
AbstractBackground: Signal transduction pathways with shared components must be insulated from each ...
SummaryThe scaffold protein Ste5 is required to properly direct signaling through the yeast mating p...
Scaffold proteins organize many MAP kinase path-ways by interacting with several components of these...
Ubiquitination is a post-translational modification that tags proteins for proteasomal degradation. ...
MAPKs are activated by dual phosphorylation. Much of the MAPK Fus3 is monophosphorylated and acts to...
Reversible phosphorylation of the phospholipid phosphatidylinositol (PI) is a key event in the deter...
AbstractScaffold proteins organize many MAP kinase pathways by interacting with several components o...
Many different signaling pathways share common components but nevertheless invoke distinct physiolog...
Distinct MAP kinase pathways in yeast share several signaling components , including the PAK Ste20 a...
Mitogen-activated protein (MAP) kinases comprise a highly conserved family of eukaryotic signal tran...
We report an unanticipated system of joint regulation by cyclin-dependent kinase (CDK) and mitogen-a...
To survive, cells must be able to properly sense and respond to information in a fluctuating environ...
Scaffold proteins are believed to enhance specificity in cell signaling when different pathways shar...