In animals, 14-3-3 proteins bind two cell cycle proteins WEE1 and CDC25 stabilising their phosphorylated state. We report here for the first time interactions between WEE1 and 14-3-3 proteins both in vitro and in vivo in plants. The Arabidopsis 14-3-3 family partitions into either an Epsilon or Non-Epsilon group. In a yeast 2-hybrid screen Arabidopsis WEE1 interacted with the Non-Epsilon group. Subsequently, we focussed on Non-Epsilon GF14ω, a 14-3-3 expressed more strongly in proliferative than in non-proliferative cells and which is able to rescue a cell cycle checkpoint mutant in yeast. The WEE1/GF14ω interaction was confirmed by an in vitro co-immunoprecipitation assay and in vivo in tobacco BY-2 cells by bi-molecular fluorescence compl...
WEE1 regulates the cell cycle by inactivating cyclin dependent protein kinases (CDKs) via phosphoryl...
The cell cycle is the life of a cell from one mitotic division to the next. In yeast and animals the...
In eukaryotes the regulatory cell cycle gene, WEE1, encodes a protein kinase. In late G2, it inactiv...
In animals, 14-3-3 proteins bind two cell cycle proteins WEE1 and CDC25 stabilising their phosphoryl...
Abstract: In animals, 14-3-3 proteins bind two cell cycle proteins WEE1 and CDC25 stabilising their ...
In animals, 14-3-3 proteins bind two cell cycle proteins WEE1 and CDC25 stabilising their phosphoryl...
WEE 1 is a key eukaryotic cell cycle regulator. In plants it has a clear role at the DNA damage/ DNA...
Phosphoregulation is essential for the control of cell division. In yeasts and animals, premature en...
Phosphoregulation is essential for the control of cell division. In yeasts and animals, premature en...
Phosphoregulation is essential for the control of cell division. In yeasts and animals, premature en...
The cell cycle is the life of a cell from one mitotic division to the next. In yeast and animals the...
In yeasts and animals, premature entry into mitosis is prevented by the inhibitory phosphorylation o...
In yeasts and animals, premature entry into mitosis is prevented by the inhibitory phosphorylation o...
WEE1 regulates the cell cycle by inactivating cyclin dependent protein kinases (CDKs) via phosphoryl...
WEE1 regulates the cell cycle by inactivating cyclin dependent protein kinases (CDKs) via phosphoryl...
The cell cycle is the life of a cell from one mitotic division to the next. In yeast and animals the...
In eukaryotes the regulatory cell cycle gene, WEE1, encodes a protein kinase. In late G2, it inactiv...
In animals, 14-3-3 proteins bind two cell cycle proteins WEE1 and CDC25 stabilising their phosphoryl...
Abstract: In animals, 14-3-3 proteins bind two cell cycle proteins WEE1 and CDC25 stabilising their ...
In animals, 14-3-3 proteins bind two cell cycle proteins WEE1 and CDC25 stabilising their phosphoryl...
WEE 1 is a key eukaryotic cell cycle regulator. In plants it has a clear role at the DNA damage/ DNA...
Phosphoregulation is essential for the control of cell division. In yeasts and animals, premature en...
Phosphoregulation is essential for the control of cell division. In yeasts and animals, premature en...
Phosphoregulation is essential for the control of cell division. In yeasts and animals, premature en...
The cell cycle is the life of a cell from one mitotic division to the next. In yeast and animals the...
In yeasts and animals, premature entry into mitosis is prevented by the inhibitory phosphorylation o...
In yeasts and animals, premature entry into mitosis is prevented by the inhibitory phosphorylation o...
WEE1 regulates the cell cycle by inactivating cyclin dependent protein kinases (CDKs) via phosphoryl...
WEE1 regulates the cell cycle by inactivating cyclin dependent protein kinases (CDKs) via phosphoryl...
The cell cycle is the life of a cell from one mitotic division to the next. In yeast and animals the...
In eukaryotes the regulatory cell cycle gene, WEE1, encodes a protein kinase. In late G2, it inactiv...