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Oxidation of Cytochrome 605 Is the Rate-Limiting Step when Ferrimicrobium acidiphilum Respires Aerobically on Soluble Iron.
Blake, Robert C; Guidry, Jessie J; Anthony, Micah D; Ban, Bhupal; Smith, Kayla A; Walton, Noelle N; Painter, Richard G.
Afiliación
  • Blake RC; College of Pharmacy, Xavier University of Louisiana, New Orleans, Louisiana, USA rblake@xula.edu.
  • Guidry JJ; LSUHSC Proteomics Core Facility, Louisiana State University Health Sciences Center, New Orleans, Louisiana, USA.
  • Anthony MD; College of Pharmacy, Xavier University of Louisiana, New Orleans, Louisiana, USA.
  • Ban B; College of Pharmacy, Xavier University of Louisiana, New Orleans, Louisiana, USA.
  • Smith KA; College of Pharmacy, Xavier University of Louisiana, New Orleans, Louisiana, USA.
  • Walton NN; College of Pharmacy, Xavier University of Louisiana, New Orleans, Louisiana, USA.
  • Painter RG; College of Pharmacy, Xavier University of Louisiana, New Orleans, Louisiana, USA.
Appl Environ Microbiol ; 86(22)2020 10 28.
Article en En | MEDLINE | ID: mdl-32917753
ABSTRACT
Proteins that oxidize extracellular substrates in Gram-positive bacteria are poorly understood. Ferrimicrobium acidiphilum is an actinobacterium that respires aerobically on extracellular ferrous ions at pH 1.5. In situ absorbance measurements were conducted on turbid suspensions of intact Fm. acidiphilum using an integrating cavity absorption meter designed for that purpose. Initial velocity kinetic studies monitored the appearance of product ferric ions in the presence of catalytic quantities of cells. Cell-catalyzed iron oxidation obeyed the Michaelis-Menten equation with Km and Vmax values of 71 µM and 0.29 fmol/min/cell, respectively. Limited-turnover kinetic studies were conducted with higher concentrations of cells to detect and monitor changes in the absorbance properties of cellular redox proteins when the cells were exposed to limited quantities of soluble reduced iron. A single a-type cytochrome with reduced absorbance peaks at 448 and 605 nm was the only redox-active chromophore that was visible as the cells respired aerobically on iron. The reduced cytochrome 605 exhibited mathematical and correlational properties that were consistent with the hypothesis that oxidation of the cytochrome constituted the rate-limiting step in the aerobic respiratory process, with a turnover number of 35 ± 2 s-1 Genomic and proteomic analyses showed that Fm. acidiphilum could and did express only two a-type heme copper terminal oxidases. Cytochrome 605 was associated with the terminal oxidase gene that is located between nucleotides 31,090 and 33,039, inclusive, in the annotated circular genome of this bacterium.IMPORTANCE The identities and functions of proteins involved in aerobic respiration on extracellular ferrous ions at acidic pH are poorly understood in the four phyla of Gram-positive eukaryotes and archaea where such activities occur. In situ absorbance measurements were conducted on Fm. acidiphilum as it respired on extracellular iron using an integrating cavity absorption meter that permitted accurate optical measurements in turbid suspensions of the intact bacterium under physiological conditions. The significance of these measurements is that they permitted a direct spectrophotometric examination of the extents and rates of biological electron transfer events in situ under noninvasive physiological conditions without disrupting the complexity of the live cellular environment. One thing is certain one way to understand how a protein functions in an intact organism is to actually observe that protein as it functions in the intact organism. This paper provides an example of just such an observation.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Proteínas Bacterianas / Actinobacteria / Citocromos / Hierro Idioma: En Revista: Appl Environ Microbiol Año: 2020 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Proteínas Bacterianas / Actinobacteria / Citocromos / Hierro Idioma: En Revista: Appl Environ Microbiol Año: 2020 Tipo del documento: Article País de afiliación: Estados Unidos