1994FEMS Microbiology LettersRequires access

Properties of a thermostable 4Fe-ferredoxin from the hyperthermophilic bacteriumThermotoga maritima

Jenny M. Blamey, Swarnalatha Mukund, Michael W. W. Adams

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Abstract

A ferredoxin has been purified from one of the most ancient and most thermophilic bacteria known, Thermotoga maritima, which grows up to 90 degrees C. The reduced protein (M(r) approx. 6300) contains a single S = 1/2 [4Fe-4S]1+ cluster with complete cysteinyl ligation, and was unaffected after incubation at 95 degrees C for 12 h. It functioned as an electron carrier for T. maritima pyruvate oxidoreductase. Remarkably, the properties and amino acid sequence of this hyperthermophilic bacterial protein are much more similar to those of ferredoxins from hyperthermophilic archaea, rather than ferredoxins from mesophilic and moderately thermophilic bacteria.

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What this paper is about

A ferredoxin has been purified from one of the most ancient and most thermophilic bacteria known, Thermotoga maritima, which grows up to 90 degrees C. The reduced protein (M(r) approx. 6300) contains a single S = 1/2 [4Fe-4S]1+ cluster with complete cysteinyl ligation, and was unaffected after incubation at 95 degrees C for 12 h. It functioned as an electron carrier for T. maritima pyruvate oxidoreductase. Remarkably, the properties and amino acid sequence of this hyperthermophilic bacterial protein are much more similar to those of ferredoxins from hyperthermophilic archaea, rather than ferredoxins from mesophilic and moderately thermophilic bacteria.

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Available abstract

A ferredoxin has been purified from one of the most ancient and most thermophilic bacteria known, Thermotoga maritima, which grows up to 90 degrees C. The reduced protein (M(r) approx. 6300) contains a single S = 1/2 [4Fe-4S]1+ cluster with complete cysteinyl ligation, and was unaffected after incubation at 95 degrees C for 12 h. It functioned as an electron carrier for T. maritima pyruvate oxidoreductase. Remarkably, the properties and amino acid sequence of this hyperthermophilic bacterial protein are much more similar to those of ferredoxins from hyperthermophilic archaea, rather than ferredoxins from mesophilic and moderately thermophilic bacteria.

Key concepts: Thermotoga maritima, Ferredoxin, Thermophile, Archaea, Hyperthermophile, Bacteria, Oxidoreductase, Mesophile

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Properties of a thermostable 4Fe-ferredoxin from the hyperthermophilic bacteriumThermotoga maritima — Research Paper | ScholarLens