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Secondary Alcohol Dehydrogenases from Thermoanaerobacter pseudoethanolicus and Thermoanaerobacter brockii as Robust Catalysts

ChemBioChem, 2021
AbstractAlcohol dehydrogenases (ADHs) are an important type of enzyme that have significant applications as biocatalysts. Secondary ADHs from Thermoanaerobacter pseudoethanolicus (TeSADH) and Thermoanaerobacter brockii (TbSADH) are well‐known as robust catalysts.
Musa M. Musa   +2 more
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[Oligonucleotide probes for the detection of Thermoanaerobacter].

Mikrobiologiia, 2004
Based on the analysis of 16S rRNA nucleotide sequences, oligonucleotide probes were designed for the detection and identification of representatives of the genus Thermoanaerobacter. To increase the specificity level of detection, the genus Thermoanaerobacter was divided into three groups.
I V, Subbotina   +5 more
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Branched-chain alcohol formation from branched-chain amino acids by Thermoanaerobacter brockii and Thermoanaerobacter yonseiensis

Anaerobe, 2014
Thermoanaerobacter species degrade branched-chain amino acids to a mixture of their corresponding branched-chain fatty acids and alcohols in the presence of thiosulfate; only acid formation occurred when Thermoanaerobacter strains were cultivated in co-culture with a hydrogenotrophic methanogen.
Sean Michael Scully, Johann Orlygsson
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Ethanol fermentation characteristics of Thermoanaerobacter ethanolicus

Enzyme and Microbial Technology, 1985
Abstract Thermoanaerobacter ethanolicus is an extreme thermophilic non-spore forming ethanol-producing anaerobic bacterium. Minimum nutrient requirements and optimum growth conditions have been established. An optimum yeast extract-glucose ratio for ethanol yield has also been determined.
V. Kannan, R. Mutharasan
openaire   +1 more source

Isolation from canned foods of a novel Thermoanaerobacter species phylogenetically related to Thermoanaerobacter mathranii (Larsen 1997): Emendation of the species description and proposal of Thermoanaerobacter mathranii subsp. Alimentarius subsp. Nov

Anaerobe, 2006
Several anaerobic, thermophilic, Gram-positive bacteria were isolated from dairy products and canned meats. While some isolates were identified as Thermoanaerobacter thermohydrosulfuricus, comparisons of 16S rDNA genes indicated that others were phylogenetically closely related to Thermoanaerobacter mathranii, and more distantly related to ...
Jean-Philippe, Carlier   +2 more
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System identification of the fermentation system of Thermoanaerobacter sp. X514

2012 IEEE 6th International Conference on Systems Biology (ISB), 2012
Bioethanol production by means of anaerobic thermophilic microorganisms with pentose or hexose as the substrate are of paramount importance in sustainable fuel innovation. Manipulation of microorganisms and the associated experiment conditions by means of various ad-hoc technology is obviously the most straightforward way with the aim of maximizing ...
Jing Yang 0006   +4 more
openaire   +1 more source

Metabolic engineering to improve ethanol production in Thermoanaerobacter mathranii

Applied Microbiology and Biotechnology, 2010
Thermoanaerobacter mathranii can produce ethanol from lignocellulosic biomass at high temperatures, but its biotechnological exploitation will require metabolic engineering to increase its ethanol yield. With a cofactor-dependent ethanol production pathway in T.
Shuo, Yao, Marie Just, Mikkelsen
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Regioselective glucosylation of inositols catalyzed by Thermoanaerobacter sp. CGTase

Carbohydrate Research, 2012
Monoglucosylated products of L-chiro-, D-chiro-, muco-, and allo-inositol were synthesized by regioselective α-D-glucosylation with cyclodextrin glucosyl transferase from Thermoanaerobacter sp. after hydrolysis of by products with Aspergillus niger glucoamylase.
Alfonso, Miranda-Molina   +4 more
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Thermal Stability of Thermoanaerobacter tengcongensis Ribosome Recycling Factor

Protein & Peptide Letters, 2014
Ribosome recycling factor (RRF) and elongation factor-G catalyze disassembly of the post-termination complex and recycling of the ribosomal subunits back to a new round of initiation. Thermoanaerobacter tengcongensis survive high temperatures that Escherichia coli cannot, partly due to the higher thermal stability of T. tengcongensis ribosome recycling
Yi, Shi   +4 more
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Functional role of β domain in the Thermoanaerobacter tengcongensis glucoamylase

Applied Microbiology and Biotechnology, 2013
Thermoanaerobacter tengcongensis MB4 glucoamylase (TteGA) contains a catalytic domain (CD), which is structurally similar to eukaryotic GA, and a β domain (BD) with ambiguous function. Firstly, BD is found to be essential to TteGA activity because CD alone could not hydrolyze soluble starch.
Zilong, Li   +5 more
openaire   +2 more sources

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