Mo and W bis-MGD enzymes: nitrate reductases and formate dehydrogenases.
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Protein Crystallography Reveals a Role for the FS0 Cluster of Escherichia coli Nitrate Reductase A (NarGHI) in Enzyme MaturationA membrane-bound multienzyme, hydrogen-oxidizing, and sulfur-reducing complex from the hyperthermophilic bacterium Aquifex aeolicusTungsten and molybdenum regulation of formate dehydrogenase expression in Desulfovibrio vulgaris HildenboroughNitrate and periplasmic nitrate reductasesA review of catalysts for the electroreduction of carbon dioxide to produce low-carbon fuels.Molybdenum Availability Is Key to Nitrate Removal in Contaminated Groundwater Environments.Design, Syntheses, and Characterization of a Sterically Encumbered Dioxo Molybdenum (VI) CoreMolybdenum isotope fractionation by cyanobacterial assimilation during nitrate utilization and N₂ fixation.Metatranscriptomic evidence of pervasive and diverse chemolithoautotrophy relevant to C, S, N and Fe cycling in a shallow alluvial aquifer.Structural and functional models in molybdenum and tungsten bioinorganic chemistry: description of selected model complexes, present scenario and possible future scopes.Shifting the metallocentric molybdoenzyme paradigm: the importance of pyranopterin coordination.Molybdenum and tungsten-dependent formate dehydrogenases.Theoretical studies on mechanisms of some Mo enzymes.Acetylene hydratase: a non-redox enzyme with tungsten and iron-sulfur centers at the active site.Pyranopterin Coordination Controls Molybdenum Electrochemistry in Escherichia coli Nitrate Reductase.Effects of molybdate and tungstate on expression levels and biochemical characteristics of formate dehydrogenases produced by Desulfovibrio alaskensis NCIMB 13491Crystallization and preliminary X-ray analysis of formate oxidase, an enzyme of the glucose-methanol-choline oxidoreductase family.Dual effects of sodium tungstate on adipocyte biology: inhibition of adipogenesis and stimulation of cellular oxygen consumption.Bioelectrochemical conversion of CO2 to value added product formate using engineered Methylobacterium extorquens.Robust Production, Crystallization, Structure Determination, and Analysis of [Fe-S] Proteins: Uncovering Control of Electron Shuttling and Gating in the Respiratory Metabolism of Molybdopterin Guanine Dinucleotide Enzymes.Site-directed mutagenesis of Campylobacter concisus respiratory genes provides insight into the pathogen's growth requirements
P2860
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P2860
Mo and W bis-MGD enzymes: nitrate reductases and formate dehydrogenases.
description
2004 nî lūn-bûn
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2004年の論文
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2004年論文
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2004年論文
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2004年論文
@zh-hk
2004年論文
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2004年論文
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2004年论文
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2004年论文
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@zh-cn
name
Mo and W bis-MGD enzymes: nitrate reductases and formate dehydrogenases.
@ast
Mo and W bis-MGD enzymes: nitrate reductases and formate dehydrogenases.
@en
type
label
Mo and W bis-MGD enzymes: nitrate reductases and formate dehydrogenases.
@ast
Mo and W bis-MGD enzymes: nitrate reductases and formate dehydrogenases.
@en
prefLabel
Mo and W bis-MGD enzymes: nitrate reductases and formate dehydrogenases.
@ast
Mo and W bis-MGD enzymes: nitrate reductases and formate dehydrogenases.
@en
P2860
P50
P1476
Mo and W bis-MGD enzymes: nitrate reductases and formate dehydrogenases
@en
P2093
José Trincão
P2860
P2888
P304
P356
10.1007/S00775-004-0573-9
P577
2004-08-12T00:00:00Z