Lipoate-binding proteins and specific lipoate-protein ligases in microbial sulfur oxidation reveal an atpyical role for an old cofactor

scientific article published on 13 July 2018

Lipoate-binding proteins and specific lipoate-protein ligases in microbial sulfur oxidation reveal an atpyical role for an old cofactor is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.7554/ELIFE.37439
P932PMC publication ID6067878
P698PubMed publication ID30004385

P50authorJohn E CronanQ89272193
Xinyun CaoQ89480598
Tobias KochQ90027528
Christiane DahlQ42574157
P2093author name stringJulia Finkensieper
Lydia Steffens
Renate Zigann
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Scavenging of cytosolic octanoic acid by mutant LplA lipoate ligases allows growth of Escherichia coli strains lacking the LipB octanoyltransferase of lipoic acid synthesisQ37410248
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P407language of work or nameEnglishQ1860
P577publication date2018-07-13
P1433published ineLifeQ2000008
P1476titleLipoate-binding proteins and specific lipoate-protein ligases in microbial sulfur oxidation reveal an atpyical role for an old cofactor
P478volume7

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cites work (P2860)
Q64263738Diversity and Distribution of Sulfur Oxidation-Related Genes in , a Genus of Chemolithoautotrophic and Haloalkaliphilic Sulfur-Oxidizing Bacteria
Q64104816Genomes of Neutrophilic Sulfur-Oxidizing Chemolithoautotrophs Representing 9 Proteobacterial Species From 8 Genera
Q63874588One-megadalton metalloenzyme complex in involved in benzene ring reduction beyond the biological redox window
Q61449529Sulfur Oxidation in the Acidophilic Autotrophic spp
Q92372613Two Chloroflexi classes independently evolved the ability to persist on atmospheric hydrogen and carbon monoxide

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