Literature DB >> 11083780

Analysis of urease expression in Actinomyces naeslundii WVU45.

E Morou-Bermudez1, R A Burne.   

Abstract

The hydrolysis of urea by ureases of oral bacteria in dental plaque can cause a considerable increase in plaque pH, which can inhibit the development of dental caries. There is also indirect evidence that urea metabolism may promote the formation of calculus and that ammonia release from urea could exacerbate periodontal diseases. Actinomyces naeslundii, an early colonizer of the oral cavity and a numerically significant plaque constituent, demonstrates comparatively low levels of urease activity on isolation, so this organism has not been considered a major contributor to total oral urease activity. In this study it was observed that urease activity and urease-specific mRNA levels in A. naeslundii WVU45 can increase up to 50-fold during growth under nitrogen-limiting conditions. Using primer extension analysis, a putative, proximal, nitrogen-regulated promoter of the A. naeslundii urease gene cluster was identified. The functionality and nitrogen responsiveness of this promoter were confirmed using reporter gene fusions and 5' deletion analysis. The data indicated that regulation of urease expression by nitrogen availability in A. naeslundii may require a positive transcriptional activator. Plaque bacteria may experience nitrogen limitation when carbohydrates are present in excess. Therefore, based on the results of this study and in contrast to previous beliefs, strains of A. naeslundii may have the potential to be significant contributors to total plaque ureolysis, particularly during periods when there is an increased risk for caries development.

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Year:  2000        PMID: 11083780      PMCID: PMC97765          DOI: 10.1128/IAI.68.12.6670-6676.2000

Source DB:  PubMed          Journal:  Infect Immun        ISSN: 0019-9567            Impact factor:   3.441


  50 in total

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Authors:  E B Nicholson; E A Concaugh; P A Foxall; M D Island; H L Mobley
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10.  Genetic and physiologic characterization of urease of Actinomyces naeslundii.

Authors:  E Morou-Bermudez; R A Burne
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7.  Insights into Abundant Rumen Ureolytic Bacterial Community Using Rumen Simulation System.

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