Domain hiding |   Altered binding specificity |   Motif hiding |   Composite binding site formation |
  Uncategorised |   Rheostatic |   Allostery |   Avidity-sensing |
  Physicochemical compatibility |   Pre-translational |   Competition |
E3 ubiquitin-protein ligase Mdm2 | Phosphate system positive regulatory protein PHO4 (Saccharomyces) |
Motif | Start | End | Switch Type | Switch Subtype | Switch Description | Information |
E3 ubiquitin-protein ligase Mdm2 - MDM2 -  Homo sapiens | |||||||
TRG_NLS_MonoExtC_3 | 181 | 187 | Binary | Pre‑translational | Alternative splicing removes the nuclear localisation signal (NLS) of E3 ubiquitin-protein ligase Mdm2 (MDM2), abrogating binding to Importin subunit alpha-1 (KPNA1). The exclusion from the nucleus is not complete however, as another NLS (466-473) is speculated to target splice variants to the nucleus, however, to the annotator it seems more likely that splice variants can dimerise with full-length MDM2 and be simultaneously transported into nucleus. | ||
Phosphate system positive regulatory protein PHO4 - PHO4 -  Saccharomyces cerevisiae (strain ATCC 204508 / S288c) | |||||||
TRG_NLS_MonoExtC_3 | 156 | 161 | Binary | Physicochemical compatibility | Phosphorylation of S152 adjacent to the NLS of Phosphate system positive regulatory protein PHO4 (PHO4) by the Pho80-Pho85 CDK-Cyclin complex inhibits nuclear import this protein by blocking its interaction with Importin subunit beta-3 (PSE1). Upon phosphate starvation, Pho81 inhibits the Pho80-Pho85 complex, leading to translocation of Phosphate system positive regulatory protein PHO4 (PHO4) to the nucleus, where it regulates expression of phosphate-responsive genes. |