1. Negative functional interaction between cell integrity MAPK pathway and Rho1 GTPase in fission yeast.
- Author
-
Viana RA, Pinar M, Soto T, Coll PM, Cansado J, and Pérez P
- Subjects
- Amino Acid Sequence, Dual Specificity Phosphatase 1 metabolism, Gene Expression Regulation, Fungal drug effects, Glucans biosynthesis, MAP Kinase Signaling System, Magnesium Chloride pharmacology, Mitogen-Activated Protein Kinases genetics, Mitogen-Activated Protein Kinases metabolism, Mutation, Osmotic Pressure, Phosphorylation drug effects, Schizosaccharomyces pombe Proteins metabolism, Tacrolimus pharmacology, rho GTP-Binding Proteins metabolism, Calcineurin metabolism, Cell Wall metabolism, Dual Specificity Phosphatase 1 genetics, Schizosaccharomyces pombe Proteins genetics, rho GTP-Binding Proteins genetics
- Abstract
Rho1 GTPase is the main activator of cell wall glucan biosynthesis and regulates actin cytoskeleton in fungi, including Schizosaccharomyces pombe. We have obtained a fission yeast thermosensitive mutant strain carrying the rho1-596 allele, which displays reduced Rho1 GTPase activity. This strain has severe cell wall defects and a thermosensitive growth, which is partially suppressed by osmotic stabilization. In a global screening for rho1-596 multicopy suppresors the pmp1+ gene was identified. Pmp1 is a dual specificity phosphatase that negatively regulates the Pmk1 mitogen-activated protein kinase (MAPK) cell integrity pathway. Accordingly, elimination of Pmk1 MAPK partially rescued rho1-596 thermosensitivity, corroborating the unexpected antagonistic functional relationship of these genes. We found that rho1-596 cells displayed increased basal activation of the cell integrity MAPK pathway and therefore were hypersensitive to MgCl2 and FK506. Moreover, the absence of calcineurin was lethal for rho1-596. We found a higher level of calcineurin activity in rho1-596 than in wild-type cells, and overexpression of constitutively active calcineurin partially rescued rho1-596 thermosensitivity. All together our results suggest that loss of Rho1 function causes an increase in the cell integrity MAPK activity, which is detrimental to the cells and turns calcineurin activity essential.
- Published
- 2013
- Full Text
- View/download PDF