Results 161 to 170 of about 5,730 (193)
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Metalloproteins/metalloenzymes for the synthesis of acetyl-CoA in the Wood-Ljungdahl pathway
Science in China Series B: Chemistry, 2009This paper focuses on the group of metalloproteins/metalloenzymes in the acetyl-coenzyme A synthesis pathway of anaerobic microbes called Wood-Ljungdahl pathway, including formate dehydrogenase (FDH), corrinoid iron sulfur protein (CoFeSP), acetyl-CoA synthase (ACS) and CO dehydrogenase (CODH).
XiaoFei Zhu, XiangShi Tan
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Metabolic Engineering, 2023
Here, we report the construction of a Clostridium acetobutylicum strain ATCC 824 (pCD07239) by heterologous expression of carbonyl branch genes (CD630_0723∼CD630_0729) from Clostridium difficile, aimed at installing a heterologous Wood-Ljungdahl pathway (WLP).
Yu-Sin, Jang +9 more
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Here, we report the construction of a Clostridium acetobutylicum strain ATCC 824 (pCD07239) by heterologous expression of carbonyl branch genes (CD630_0723∼CD630_0729) from Clostridium difficile, aimed at installing a heterologous Wood-Ljungdahl pathway (WLP).
Yu-Sin, Jang +9 more
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Microbial production of methyl-uranium via the Wood-Ljungdahl pathway
Science of The Total EnvironmentThe misuse of uranium is a major threat to human health and the environment. In microbial ecosystems, microbes deploy various strategies to cope with uranium-induced stress. However, the exact ecological strategies and mechanisms underlying uranium tolerance in microbes remain unclear.
Hangzheng, Zhao +8 more
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Environmental Microbiology Reports, 2019
Summary The Wood–Ljungdahl (WL) pathway is an important component of the metabolic machinery in multiple anaerobic prokaryotes, including numerous yet‐uncultured bacterial phyla. The pathway can operate in the reductive and oxidative directions, enabling a wide range of metabolic processes.
Noha H. Youssef +8 more
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Summary The Wood–Ljungdahl (WL) pathway is an important component of the metabolic machinery in multiple anaerobic prokaryotes, including numerous yet‐uncultured bacterial phyla. The pathway can operate in the reductive and oxidative directions, enabling a wide range of metabolic processes.
Noha H. Youssef +8 more
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Biochemistry, 2002
CO dehydrogenase/acetyl-CoA synthase (CODH/ACS), a key enzyme in the Wood-Ljungdahl pathway of anaerobic CO(2) fixation, is a bifunctional enzyme containing CODH, which catalyzes the reversible two-electron oxidation of CO to CO(2), and ACS, which catalyzes acetyl-CoA synthesis from CoA, CO, and a methylated corrinoid iron-sulfur protein (CFeSP).
Javier, Seravalli +2 more
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CO dehydrogenase/acetyl-CoA synthase (CODH/ACS), a key enzyme in the Wood-Ljungdahl pathway of anaerobic CO(2) fixation, is a bifunctional enzyme containing CODH, which catalyzes the reversible two-electron oxidation of CO to CO(2), and ACS, which catalyzes acetyl-CoA synthesis from CoA, CO, and a methylated corrinoid iron-sulfur protein (CFeSP).
Javier, Seravalli +2 more
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The Eastern and Western branches of the Wood/Ljungdahl pathway: how the East and West were won
BioFactors, 1997Figure 1 is a transmission electron micrograph of Clostridium ljungdahlii [1]. It, like Acetobacterium woodii [2], was named after someone who made great contributions to the understanding of how anaerobes fix carbon dioxide. C. ljungdahlii was named after Lars Ljungdahl; A. woodii after Harland Wood. I had the good fortune to train under both Lars and
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Chemical Engineering Science, 2016
Abstract In this work, a thermodynamic framework was proposed to achieve improved process understanding of ethanol and acetate fermentation in a continuous stirred tank bioreactor from syngas through the Wood–Ljungdahl pathway. The bioreactor performance was evaluated using both conventional exergy and eco-exergy principles to identify the effect of ...
Mortaza Aghbashlo +4 more
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Abstract In this work, a thermodynamic framework was proposed to achieve improved process understanding of ethanol and acetate fermentation in a continuous stirred tank bioreactor from syngas through the Wood–Ljungdahl pathway. The bioreactor performance was evaluated using both conventional exergy and eco-exergy principles to identify the effect of ...
Mortaza Aghbashlo +4 more
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Biochemistry, 1999
The methyltetrahydrofolate:corrinoid/iron-sulfur protein methyltransferase (MeTr) from Clostridium thermoaceticum catalyzes transfer of the N5-methyl group from (6S)-methyltetrahydrofolate (CH3-H4folate) to the cobalt center of a corrinoid/iron-sulfur protein (CFeSP), forming methylcob(III)amide and H4folate.
J, Seravalli, S, Zhao, S W, Ragsdale
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The methyltetrahydrofolate:corrinoid/iron-sulfur protein methyltransferase (MeTr) from Clostridium thermoaceticum catalyzes transfer of the N5-methyl group from (6S)-methyltetrahydrofolate (CH3-H4folate) to the cobalt center of a corrinoid/iron-sulfur protein (CFeSP), forming methylcob(III)amide and H4folate.
J, Seravalli, S, Zhao, S W, Ragsdale
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1994
We will get to acetogens shortly. Before that, I must note that it was never my intent to deliver the introductory chapter for this book. That was Harland’s job, and as editor of this book, I was elated when he agreed to take on that project. I knew full well no one but he was up to that task.
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We will get to acetogens shortly. Before that, I must note that it was never my intent to deliver the introductory chapter for this book. That was Harland’s job, and as editor of this book, I was elated when he agreed to take on that project. I knew full well no one but he was up to that task.
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