TRUNCATED PROTEIN PHOSPHATASE-GLC7 RESTORES TRANSLATIONAL ACTIVATION OF GCN4-EXPRESSION IN YEAST MUTANTS DEFECTIVE FOR THE EIF-2-ALPHA KINASE-GCN2

被引:91
作者
WEK, RC
CANNON, JF
DEVER, TE
HINNEBUSCH, AG
机构
[1] NICHHD, MOLEC GENET LAB, MOLEC GENET LOWER EUKARYOTES SECT, BETHESDA, MD 20892 USA
[2] UNIV MISSOURI, DEPT MOLEC MICROBIOL & IMMUNOL, COLUMBIA, MO 65211 USA
关键词
D O I
10.1128/MCB.12.12.5700
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
GCN2 is a protein kinase in Saccharomyces cerevisiae that is required for increased expression of the transcriptional activator GCN4 in amino acid-starved cells. GCN2 stimulates GCN4 synthesis at the translational level by phosphorylating the alpha subunit of eukaryotic translation initiation factor 2 (eIF-2). We identified a truncated form of the GLC7 gene, encoding the catalytic subunit of a type 1 protein phosphatase, by its ability to restore derepression of GCN4 expression in a strain containing the partially defective gcn2-507 allele. Genetic analysis suggests that the truncated GLC7 allele has a dominant negative phenotype, reducing the level of native type 1 protein phosphatase activity in the cell. The truncated form of GLC7 does not suppress the regulatory defect associated with a gcn2 deletion or a mutation in the phosphorylation site of eIF-2alpha (Ser-51). In addition, the presence of multiple copies of wild-type GLC7 impairs the derepression of GCN4 that occurs in response to amino acid starvation or dominant-activating mutations in GCN2. These findings suggest that the phosphatase activity of GLC7 acts in opposition to the kinase activity of GCN2 in modulating the level of eIF-2alpha phosphorylation and the translational efficiency of GCN4 mRNA. This conclusion is supported by biochemical studies showing that the truncated GLC7 allele increases the level of eIF-2alpha phosphorylation in the gcn2-507 mutant to a level approaching that seen in wild-type cells under starvation conditions. The truncated GLC7 allele also leads to reduced glycogen accumulation, indicating that this protein phosphatase is involved in regulating diverse metabolic pathways in yeast cells.
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页码:5700 / 5710
页数:11
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