Literature DB >> 26443585

S- and N-Oxide Reductases.

Victor W T Cheng, Joel H Weiner.   

Abstract

Escherichia coli is a versatile facultative anaerobe that can respire on a number of terminal electron acceptors, including oxygen, fumarate, nitrate, and S- and N-oxides. Anaerobic respiration using S- and N-oxides is accomplished by enzymatic reduction of these substrates by dimethyl sulfoxide reductase (DmsABC) and trimethylamine N-oxide reductase (TorCA). Both DmsABC and TorCA are membrane-associated redox enzymes that couple the oxidation of menaquinol to the reduction of S- and N-oxides in the periplasm. DmsABC is membrane bound and is composed of a membrane-extrinsic dimer with a 90.4-kDa catalytic subunit (DmsA) and a 23.1-kDa electron transfer subunit (DmsB). These subunits face the periplasm and are held to the membrane by a 30.8-kDa membrane anchor subunit (DmsC). The enzyme provides the scaffold for an electron transfer relay composed of a quinol binding site, five [4Fe-4S] clusters, and a molybdo-bis(molybdopterin guanine dinucleotide) (present nomenclature: Mo-bis-pyranopterin) (Mo-bisMGD) cofactor. TorCA is composed of a soluble periplasmic subunit (TorA, 92.5 kDa) containing a Mo-bis-MGD. TorA is coupled to the quinone pool via a pentaheme c subunit (TorC, 40.4 kDa) in the membrane. Both DmsABC and TorCA require system-specific chaperones (DmsD or TorD) for assembly, cofactor insertion, and/or targeting to the Tat translocon. In this chapter, we discuss the complex regulation of the dmsABC and torCAD operons, the poorly understood paralogues, and what is known about the assembly and translocation to the periplasmic space by the Tat translocon.

Entities:  

Year:  2007        PMID: 26443585     DOI: 10.1128/ecosalplus.3.2.8

Source DB:  PubMed          Journal:  EcoSal Plus        ISSN: 2324-6200


  5 in total

1.  Microbial Respiration and Formate Oxidation as Metabolic Signatures of Inflammation-Associated Dysbiosis.

Authors:  Elizabeth R Hughes; Maria G Winter; Breck A Duerkop; Luisella Spiga; Tatiane Furtado de Carvalho; Wenhan Zhu; Caroline C Gillis; Lisa Büttner; Madeline P Smoot; Cassie L Behrendt; Sara Cherry; Renato L Santos; Lora V Hooper; Sebastian E Winter
Journal:  Cell Host Microbe       Date:  2017-02-08       Impact factor: 21.023

2.  Oxygen-Dependent Cell-to-Cell Variability in the Output of the Escherichia coli Tor Phosphorelay.

Authors:  Manuela Roggiani; Mark Goulian
Journal:  J Bacteriol       Date:  2015-03-30       Impact factor: 3.490

3.  Comparative Genomic Study of Vinyl Chloride Cluster and Description of Novel Species, Mycolicibacterium vinylchloridicum sp. nov.

Authors:  Carlos Cortés-Albayay; Vartul Sangal; Hans-Peter Klenk; Imen Nouioui
Journal:  Front Microbiol       Date:  2021-12-22       Impact factor: 5.640

Review 4.  Molecular understanding of heteronuclear active sites in heme-copper oxidases, nitric oxide reductases, and sulfite reductases through biomimetic modelling.

Authors:  Christopher J Reed; Quan N Lam; Evan N Mirts; Yi Lu
Journal:  Chem Soc Rev       Date:  2021-03-01       Impact factor: 54.564

5.  The Tat system and its dependent cell division proteins are critical for virulence of extra-intestinal pathogenic Escherichia coli.

Authors:  Jinjin Liu; Fan Yin; Te Liu; Shaowen Li; Chen Tan; Lu Li; Rui Zhou; Qi Huang
Journal:  Virulence       Date:  2020-12       Impact factor: 5.882

  5 in total

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