|
Powered by Cell Signaling Technology |
| Site Information |
|---|
| PDKQFLIsPPAsPPV SwissProt Entrez-Gene |
| Blast this site against: NCBI SwissProt PDB |
| Site Group ID: 456022 |
| In vivo Characterization | |
|---|---|
| Methods used to characterize site in vivo: | |
| Relevant cell line - cell type - tissue: | |
| Upstream Regulation | |
|---|---|
| Putative in vivo kinases: | |
| Downstream Regulation | |
|---|---|
| Effects of modification on RCAN1: | |
| Effects of modification on biological processes: | |
| References | |
|---|---|
|
Dudilot A, Trillaud-Doppia E, Boehm J (2020) RCAN1 Regulates Bidirectional Synaptic Plasticity. Curr Biol 30, 1167-1176.e2
32084406 Curated Info |
|
|
Lundby A, et al. (2012) Quantitative maps of protein phosphorylation sites across 14 different rat organs and tissues. Nat Commun 3, 876
22673903 Curated Info |
|
|
Demirkan G, et al. (2011) Phosphoproteomic Profiling of In Vivo Signaling in Liver by the Mammalian Target of Rapamycin Complex 1 (mTORC1). PLoS One 6, e21729
21738781 Curated Info |
|
|
Liu Q, Busby JC, Molkentin JD (2009) Interaction between TAK1-TAB1-TAB2 and RCAN1-calcineurin defines a signalling nodal control point. Nat Cell Biol 11, 154-61
19136967 Curated Info |
|
|
Abbasi S, et al. (2005) The essential role of MEKK3 signaling in angiotensin II-induced calcineurin/nuclear factor of activated T-cells activation. J Biol Chem 280, 36737-46
16126726 Curated Info |