Role of norEF in Denitrification, Elucidated by Physiological Experiments with Rhodobacter sphaeroides

Author:

Bergaust Linda L.1,Hartsock Angela2,Liu Binbin1,Bakken Lars R.3,Shapleigh James P.2

Affiliation:

1. Department of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences, Ås, Norway

2. Department of Microbiology, Cornell University, Ithaca, New York, USA

3. Department of Environmental Science, Norwegian University of Life Sciences, Ås, Norway

Abstract

ABSTRACT Many denitrifying organisms contain the norEF gene cluster, which codes for two proteins that are thought to be involved in denitrification because they are expressed during the reduction of nitrite and nitric oxide. The products of both genes are predicted to be membrane associated, and the norE product is a member of the cytochrome c oxidase subunit III family. However, the specific role of norEF is unknown. The denitrification phenotypes of Rhodobacter sphaeroides strains with and without norEF genes were studied, and it was found that loss of norEF lowered the rate of denitrification from nitrate and resulted in accumulation of micromolar concentrations of nitric oxide during denitrification from nitrite. norEF appears to have no direct role in the reduction of nitric oxide; however, since deletion of norEF in the wild-type 2.4.3 strain had essentially no influence on the kinetics of potential nitric oxide reduction ( V max and K s ), as measured by monitoring the depletion of a bolus of nitric oxide injected into anoxic cultures without any other electron acceptors. However, norEF -deficient cells that had undergone a more chronic exposure to micromolar concentrations of nitric oxide showed an ∼50% reduction in V max but no change in apparent K s . These results can explain the occurrence of norEF in the 2.4.3 strain of R. sphaeroides , which can reduce nitrate to nitrous oxide, and their absence from strains such as 2.4.1, which likely use nitric oxide reductase to mitigate stress due to episodic exposure to nitric oxide from exogenous sources.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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