The Eukaryotic Two-Component Histidine Kinase Sln1p RegulatesOCH1via the Transcription Factor, Skn7p
Open Access
- 1 February 2002
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 13 (2) , 412-424
- https://doi.org/10.1091/mbc.01-09-0434
Abstract
The yeast “two-component” osmotic stress phosphorelay consists of the histidine kinase, Sln1p, the phosphorelay intermediate, Ypd1p and two response regulators, Ssk1p and Skn7p, whose activities are regulated by phosphorylation of a conserved aspartyl residue in the receiver domain. Dephospho-Ssk1p leads to activation of the hyper-osmotic response (HOG) pathway, whereas phospho-Skn7p presumably leads to activation of hypo-osmotic response genes. The multifunctional Skn7 protein is important in oxidative as well as osmotic stress; however, the Skn7p receiver domain aspartate that is the phosphoacceptor in the SLN1 pathway is dispensable for oxidative stress. Like many well-characterized bacterial response regulators, Skn7p is a transcription factor. In this report we investigate the role of Skn7p in osmotic response gene activation. Our studies reveal that the Skn7p HSF-like DNA binding domain interacts with acis-acting element identified upstream ofOCH1 that is distinct from the previously defined HSE-like Skn7p binding site. Our data support a model in which Skn7p receiver domain phosphorylation affects transcriptional activation rather than DNA binding to this class of DNA binding site.Keywords
This publication has 59 references indexed in Scilit:
- The eukaryotic response regulator Skn7p regulates calcineurin signaling through stabilization of Crz1pThe EMBO Journal, 2001
- The Transcriptional Program of Sporulation in Budding YeastScience, 1998
- Activation of the yeast SSK2 MAP kinase kinase kinase by the SSK1 two-component response regulatorThe EMBO Journal, 1998
- NarL Dimerization? Suggestive Evidence from a New Crystal Form,Biochemistry, 1998
- Exploring the Metabolic and Genetic Control of Gene Expression on a Genomic ScaleScience, 1997
- Passive Response ofSaccharomyces cerevisiaeto Osmotic Shifts: Cell Volume Variations Depending on the Physiological StateBiochemical and Biophysical Research Communications, 1996
- Structure of the Escherichia coli Response Regulator NarL,Biochemistry, 1996
- Glycoprotein biosynthesis in Saccharomyces cerevisiae: ngd29, an N‐glycosylation mutant allelic to och1 having a defect in the initiation of outer chain formationFEBS Letters, 1995
- Mutational analysis of the DNA-binding domain of yeast heat shock transcription factorNature Structural & Molecular Biology, 1994
- A two-component system that regulates an osmosensing MAP kinase cascade in yeastNature, 1994