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The model [NiFe]-hydrogenases of Escherichia coli
F Sargent - Advances in microbial physiology, 2016 - Elsevier
In Escherichia coli, hydrogen metabolism plays a prominent role in anaerobic physiology.
The genome contains the capability to produce and assemble up to four [NiFe] …
The genome contains the capability to produce and assemble up to four [NiFe] …
Complex multimeric [FeFe] hydrogenases: biochemistry, physiology and new opportunities for the hydrogen economy
K Schuchmann, NP Chowdhury, V Müller - Frontiers in microbiology, 2018 - frontiersin.org
Hydrogenases are key enzymes of the energy metabolism of many microorganisms.
Especially in anoxic habitats where molecular hydrogen (H2) is an important intermediate …
Especially in anoxic habitats where molecular hydrogen (H2) is an important intermediate …
Multiple and reversible hydrogenases for hydrogen production by Escherichia coli: dependence on fermentation substrate, pH and the F0F1-ATPase
K Trchounian, A Poladyan, A Vassilian… - Critical reviews in …, 2012 - Taylor & Francis
Molecular hydrogen (H2) can be produced via hydrogenases during mixed-acid
fermentation by bacteria. Escherichia coli possesses multiple (four) hydrogenases …
fermentation by bacteria. Escherichia coli possesses multiple (four) hydrogenases …
Hydrogen production from glycerol by Escherichia coli and other bacteria: an overview and perspectives
K Trchounian, A Trchounian - Applied Energy, 2015 - Elsevier
Hydrogen (H 2) is a clean, effective and renewable fuel which can be produced by different
methods including biological ones, namely fermentation and biophotolysis. To improve …
methods including biological ones, namely fermentation and biophotolysis. To improve …
[HTML][HTML] Formate hydrogenlyase, formic acid translocation and hydrogen production: Dynamic membrane biology during fermentation
Abstract Formate hydrogenlyase-1 (FHL-1) is a complex-I-like enzyme that is commonly
found in gram-negative bacteria. The enzyme comprises a peripheral arm and a membrane …
found in gram-negative bacteria. The enzyme comprises a peripheral arm and a membrane …
Function of biohydrogen metabolism and related microbial communities in environmental bioremediation
Y Teng, Y Xu, X Wang, P Christie - Frontiers in microbiology, 2019 - frontiersin.org
Hydrogen (H2) metabolism has attracted considerable interest because the activities of H2-
producing and consuming microbes shape the global H2 cycle and may have vital …
producing and consuming microbes shape the global H2 cycle and may have vital …
The challenges and prospects of Escherichia coli as an organic acid production host under acid stress
J Yang, J Zhang, Z Zhu, G Du - Applied Microbiology and Biotechnology, 2021 - Springer
Objective Organic acids have a wide range of applications and have attracted the attention
of many industries, and their large-scale applications have led fermentation production to …
of many industries, and their large-scale applications have led fermentation production to …
Mechanisms for hydrogen production by different bacteria during mixed-acid and photo-fermentation and perspectives of hydrogen production biotechnology
A Trchounian - Critical reviews in biotechnology, 2015 - Taylor & Francis
H2 has a great potential as an ecologically-clean, renewable and capable fuel. It can be
mainly produced via hydrogenases (Hyd) by different bacteria, especially Escherichia coli …
mainly produced via hydrogenases (Hyd) by different bacteria, especially Escherichia coli …
Novel insights into the bioenergetics of mixed‐acid fermentation: can hydrogen and proton cycles combine to help maintain a proton motive force?
A Trchounian, R Gary Sawers - IUBMB life, 2014 - Wiley Online Library
Escherichia coli possesses four [NiFe]‐hydrogenases that catalyze the reversible redox
reaction of 2H++ 2e−↔ H2. These enzymes together have the potential to form a hydrogen …
reaction of 2H++ 2e−↔ H2. These enzymes together have the potential to form a hydrogen …
Metabolic engineering for the optimization of hydrogen production in Escherichia coli: A review
Hydrogen is a potential sustainable energy source and it could become an alternative to
fossil fuel combustion, thus hel** to reduce greenhouse gas emissions. The biological …
fossil fuel combustion, thus hel** to reduce greenhouse gas emissions. The biological …