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PMID: 11752677 Published · epublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S. Review

Fungal histidine kinases.

Science's STKE : signal transduction knowledge environment ·Vol. 2001 ·No. 98 ·2001-09-04 ·Pages re1

Santos JL, Shiozaki K

Abstract

Eukaryotic cells predominantly use serine, threonine, and tyrosine phosphorylation in various intracellular signal transduction pathways. In contrast, prokaryotic organisms employ numerous "two-component" systems, in which signaling is achieved by transferring a phosphoryl group from phosphohistidine in the "sensor kinase" component to aspartate in the "response regulator" component. In the last several years, genetic screens and genome projects have identified sensor kinases and response regulators in lower eukaryotes and plants, revealing that eukaryotic organisms also make use of His-Asp phosphotransfer in a limited number of signaling pathways. Extensive studies in yeasts have demonstrated that a variation of the two-component system, a multistep "phosphorelay," is the prevailing mechanism among distantly related yeast species. In the budding yeast Saccharomyces cerevisiae, a His-Asp-His-Asp phosphorelay transmits osmotic stress signals to a mitogen-activated protein kinase (MAPK) cascade to induce adaptive responses. A phosphorelay in the fission yeast Schizosaccharomyces pombe, analogous to the S. cerevisiae phosphorelay, is responsible for MAPK activation in response to peroxide stress. Mammalian cells do not have any two-component or phosphorelay systems, although protein histidine kinases unrelated to the sensor kinase may be involved in cellular signaling. Because some phosphorelay proteins are essential for virulence of microbial pathogens, including the yeast fungus Candida albicans, novel antibiotics targeted to phosphorelays may be effective against eukaryotic pathogens without causing host cell damage.

MeSH Terms
Animals Fungal Proteins/physiology Histidine Kinase Humans Protein Kinases/physiology Signal Transduction/physiology
Chemicals
Fungal Proteins Protein Kinases Histidine Kinase
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Santos J L
Biochemistry and Molecular Biology Graduate Program, University of California, Davis, CA 95616, USA. [email protected]
Shiozaki K
Article Info
Journal
Science's STKE : signal transduction knowledge environment
Abbr.
Sci STKE
ISSN
1525-8882
Published
2001-09-04
Epub
2001-00-04
Pages
re1
Language
English
Region
United States
NLM ID
100964423
Subset
IM
Grants
NIGMS NIH HHS · GM59788 · United States
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