Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:2.7.7.6 (RNA polymerase)
34,946 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The triggering of mucoidy (formation of the exopolysaccharide alginate) in Pseudomonas aeruginosa is accomplished primarily in Cystic Fibrosis lung environment through activation of the promoter of a gene algD, which encodes GDP-mannose dehydrogenase, by the product of a regulatory gene algR1. Both algD and algR1 promoter regions have significant homology, including the presence of sequences recognized by the RNA polymerase sigma 54. We demonstrate that the algR1 promoter is partly constitutive and its activation, similar to that of algD, is dependent on high osmolarity as well as the presence of its own gene product and is repressed by high concentrations of AlgR1. The RpoN sigma factor also plays a critical role in the transcription of both algD and algR1 genes.
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PMID:Control of alginate synthesis in Pseudomonas aeruginosa: regulation of the algR1 gene. 251 Jul 18

Azotobacter vinelandii presents a differentiation process leading to the formation of desiccation-resistant cysts. Alginate, the exopolysaccharide produced by this bacterium, has been postulated to have a role in cyst formation. Here, we report the cloning and characterization of the A. vinelandii gene coding for the enzyme GDP-mannose dehydrogenase (algD), which is the key enzyme for alginate synthesis in Pseudomonas aeruginosa. This gene has a high degree of similarity with the algD gene from P. aeruginosa, and similar proteins seem to be involved in algD regulation in both bacteria. We show the existence of two mRNA start sites; one of these sites corresponds to a promoter transcribed by RNA polymerase containing a sigma E subunit. An A. vinelandii algD mutant which is completely impaired in alginate production and which is unable to form desiccation-resistant cells was constructed. The effects of NH4, NO3, and NaCl concentrations on algD transcription for three A. vinelandii strains producing different alginate levels were evaluated. We found a strict correlation between alginate production and algD transcription for the three strains studied; however, the effects on algD transcription under the conditions studied were different for each strain. The nitrogen source regulates algD expression in the wild-type strain.
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PMID:Characterization of the gene coding for GDP-mannose dehydrogenase (algD) from Azotobacter vinelandii. 860 50