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PMID: 10640599 Published · ppublish English Journal Article Review

The role of ammonia metabolism in nitrogen catabolite repression in Saccharomyces cerevisiae.

FEMS microbiology reviews ·Vol. 24 ·No. 1 ·2000-01-00 ·Pages 67-83

ter Schure EG, van Riel NA, Verrips CT

Abstract

Saccharomyces cerevisiae is able to use a wide variety of nitrogen sources for growth. Not all nitrogen sources support growth equally well. In order to select the best out of a large diversity of available nitrogen sources, the yeast has developed molecular mechanisms. These mechanisms consist of a sensing mechanism and a regulatory mechanism which includes induction of needed systems, and repression of systems that are not beneficial. The first step in use of most nitrogen sources is its uptake via more or less specific permeases. Hence the first level of regulation is encountered at this level. The next step is the degradation of the nitrogen source to useful building blocks via the nitrogen metabolic pathways. These pathways can be divided into routes that lead to the degradation of the nitrogen source to ammonia and glutamate, and routes that lead to the synthesis of nitrogen containing compounds in which glutamate and glutamine are used as nitrogen donor. Glutamine is synthesized out of ammonia and glutamate. The expression of the specific degradation routes is also regulated depending on the availability of a particular nitrogen source. Ammonia plays a central role as intermediate between degradative and biosynthetic pathways. It not only functions as a metabolite in metabolic reactions but is also involved in regulation of metabolic pathways at several levels. This review describes the central role of ammonia in nitrogen metabolism. This role is illustrated at the level of enzyme activity, translation and transcription.

MeSH Terms
Ammonia/metabolism Animals Fungal Proteins/genetics,metabolism Genes, Fungal/genetics Helminth Proteins/genetics,metabolism Membrane Transport Proteins/metabolism Models, Biological Nematoda/genetics,metabolism Nitrogen/metabolism Phosphorylation Proline/metabolism Repressor Proteins/physiology Saccharomyces cerevisiae/enzymology,genetics,metabolism Transcription, Genetic
Chemicals
Fungal Proteins Helminth Proteins Membrane Transport Proteins Repressor Proteins Ammonia Proline Nitrogen
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
ter Schure E G
Unilever Research, Laboratorium Vlaardingen, Olivier van Noortlaan 120, 3133 AT, Vlaardingen, The Netherlands. eelko-ter.schure@unilever.com
van Riel N A
Verrips C T
Article Info
Journal
FEMS microbiology reviews
Abbr.
FEMS Microbiol Rev
ISSN
0168-6445
Published
2000-01-00
Pages
67-83
Language
English
Region
England
NLM ID
8902526
Subset
IM
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