A model for the catabolism of rhizopine in Rhizobium leguminosarum involves a ferredoxin oxygenase complex and the inositol degradative pathway.

Symplectic ID
587013
Source
Europe PubMed Central
Last Synced with Symplectic
Sunday, 14 June, 2026 - 03:07
DOI
10.1094/mpmi.1998.11.11.1057
Publication Date
Sunday, 1 November, 1998
First Page
1057
Last Page
1068
Keywords
Rhizobium leguminosarum
Inositol
Multienzyme Complexes
Oxygenases
Ferredoxins
Nitrogen Fixation
Amino Acid Sequence
Sequence Homology, Amino Acid
Multigene Family
Models, Biological
Molecular Sequence Data
Authors
Bahar, M
de Majnik, J
Wexler, M
Fry, J
Poole, PS
Murphy, PJ
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0
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Abstract
Rhizopines are nodule-specific compounds that confer an intraspecies competitive nodulation advantage to strains that can catabolize them. The rhizopine (3-O-methyl-scyllo-inosamine, 3-O-MSI) catabolic moc gene cluster mocCABRDE(F) in Rhizobium leguminosarum bv. viciae strain 1a is located on the Sym plasmid. MocCABR are homologous to the mocCABR gene products from Sinorhizobium meliloti. MocD and MocE contain motifs corresponding to a TOL-like oxygenase and a [2Fe-2S] Rieske-like ferredoxin, respectively. The mocF gene encodes a ferredoxin reductase that would complete the oxygenase system, but is not essential for rhizopine catabolism. We propose a rhizopine catabolic model whereby MocB transports rhizopine into the cell and MocDE and MocF (or a similar protein elsewhere in the genome), under the regulation of MocR, act in concert to form a ferredoxin oxygenase system that demethylates 3-O-MSI to form scyllo-inosamine (SI). MocA, an NAD(H)-dependent dehydrogenase, and MocC continue the catabolic process. Compounds formed then enter the inositol catabolic pathway.
ISSN
0894-0282
Journal Title
Molecular plant-microbe interactions : MPMI
Volume
11
Issue
11
ID at Source
MED:9805393
Publication Status
Published
Open access
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