| Hauptseite > Publikationsdatenbank > Phosphate Starvation-Inducible Gene ushA Encodes a 5' Nucleotidase Required for Growth of Corynebacterium glutamicum on Media with Nucleotides as the Phosphorus Source |
| Journal Article | PreJuSER-46448 |
; ;
2005
Soc.
Washington, DC [u.a.]
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Please use a persistent id in citations: http://hdl.handle.net/2128/2424 doi:10.1128/AEM.71.8.4339-4344.2005
Abstract: Phosphorus is an essential component of macromolecules, like DNA, and central metabolic intermediates, such as sugar phosphates, and bacteria possess enzymes and control mechanisms that provide an optimal supply of phosphorus from the environment. UDP-sugar hydrolases and 5' nucleotidases may play roles in signal transduction, as they do in mammals, in nucleotide salvage, as demonstrated for UshA of Escherichia coli, or in phosphorus metabolism. The Corynebacterium glutamicum gene ushA was found to encode a secreted enzyme which is active as a 5' nucleotidase and a UDP-sugar hydrolase. This enzyme was synthesized and secreted into the medium when C. glutamicum was starved for inorganic phosphate. UshA was required for growth of C. glutamicum on AMP and UDP-glucose as sole sources of phosphorus. Thus, in contrast to UshA from E. coli, C. glutamicum UshA is an important component of the phosphate starvation response of this species and is necessary to access nucleotides and related compounds as sources of phosphorus.
Keyword(s): 5'-Nucleotidase: chemistry (MeSH) ; 5'-Nucleotidase: genetics (MeSH) ; 5'-Nucleotidase: metabolism (MeSH) ; Adenosine Monophosphate: metabolism (MeSH) ; Bacterial Proteins: chemistry (MeSH) ; Bacterial Proteins: genetics (MeSH) ; Bacterial Proteins: metabolism (MeSH) ; Base Sequence (MeSH) ; Corynebacterium glutamicum: enzymology (MeSH) ; Corynebacterium glutamicum: genetics (MeSH) ; Corynebacterium glutamicum: growth & development (MeSH) ; Escherichia coli Proteins: genetics (MeSH) ; Escherichia coli Proteins: metabolism (MeSH) ; Gene Expression Regulation, Bacterial (MeSH) ; Molecular Sequence Data (MeSH) ; Nucleotides: metabolism (MeSH) ; Phosphates: metabolism (MeSH) ; Phosphoric Diester Hydrolases: chemistry (MeSH) ; Phosphoric Diester Hydrolases: genetics (MeSH) ; Phosphoric Diester Hydrolases: metabolism (MeSH) ; Phosphorus: metabolism (MeSH) ; Uridine Diphosphate Sugars: metabolism (MeSH) ; Bacterial Proteins ; Escherichia coli Proteins ; Nucleotides ; Phosphates ; Uridine Diphosphate Sugars ; ushA protein, E coli ; Adenosine Monophosphate ; Phosphorus ; 5'-Nucleotidase ; Phosphoric Diester Hydrolases ; J
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