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1.
Gene ; 208(2): 215-9, 1998 Feb 27.
Article in English | MEDLINE | ID: mdl-9524269

ABSTRACT

The cycHJKL gene locus was cloned from Rhizobium etli by the rescue of a Tn5mob insertion of a mutant (IFC01) which was affected in the production of c-type cytochromes. The cycH, cycJ, cycK and cycL genes are proposed to code for different subunits of a haem lyase complex involved in the attachment of haem to cytochrome c apoproteins. CycH of 365 aa shared 27, 36, 47 and 63% identity with CycH from Paracoccus denitrificans, Bradyrhizobium japonicum, R. meliloti, and R. leguminosarum, respectively. CycJ of 153 aa shared 52, 71, and 85% identity to the cycJ gene product of B. japonicum, R. meliloti, R. leguminosarum, respectively. CycK of 666 aa shared 62, 73, and 90% homology with CycK from B. japonicum, R. meliloti, and R. leguminosarum, respectively, while CycL of 151 aa shared 57, 67 and 86% hómology with CycL from the abovementioned species. The Tn5mob insertion present in the IFC01 strain was located in the cycH gene. This strain was able to infect bean plants, but unable to fix nitrogen during symbiosis. A previously described R. etli cytochrome c-deficient MuD1lac-induced mutant (CFN4202) that induced empty nodules on Phaseolus vulgaris, also have lesions in cycH. Complementation analysis suggested that the MuD1lac insertion of the CFN4202 strain was polar on expression of genes downstream of cycH in contrast with the Tn5mob insertion present in IFC01, which showed no polarity on cycJKL. Our data suggest that CycH may not be essential for the infection process, but is necessary for nitrogen fixation.


Subject(s)
Bacterial Proteins/chemistry , Bacterial Proteins/genetics , Cytochrome c Group/biosynthesis , Membrane Proteins , Rhizobium/genetics , Bacterial Proteins/biosynthesis , Chromosome Mapping , Cloning, Molecular , Cytochrome c Group/genetics , Genes, Bacterial , Mutagenesis, Insertional , Operon , Paracoccus denitrificans/genetics , Recombinant Proteins/biosynthesis , Rhizobium/metabolism , Sequence Alignment , Sequence Homology, Amino Acid
2.
Mol Gen Genet ; 254(6): 665-73, 1997 May.
Article in English | MEDLINE | ID: mdl-9202382

ABSTRACT

A Rhizobium etli Tn5mob-induced mutant (CFN035) exhibits an enhanced capacity to oxidize N,N,N',N', tetramethyl-p -phenylenediamine (TMPD), a presumptive indicator of elevated cytochrome c terminal oxidase activity. Sequencing of the mutated gene in CFN035 revealed that it codes for the amidophosphoribosyl transferase enzyme (PurF) that catalyzes the first step in the purine biosynthetic pathway. Two c-type cytochromes with molecular weights of 32 and 27 kDa were produced in strain CFN035, which also produced a novel CO-reactive cytochrome (absorbance trough at 553 nm), in contrast to strain CE3 which produced a single 32 kDa c-type protein and did not produce the 553 nm CO-reactive cytochrome. A wild-type R. etli strain that expresses the Bradyrhizobium japonicum fixNOQP genes, which code for the symbiotic cytochrome terminal oxidase cbb3, produced similar absorbance spectra (a trough at 553 nm in CO-difference spectra) and two c-type proteins similar in size to those of strain CFN035, suggesting that CFN035 also produces the cbb3 terminal oxidase. The expression of a R. etli fixN-lacZ gene fusion was measured in several R. etli mutants affected in different steps of the purine biosynthetic pathway. Our analysis showed that purF, purD, purQ, purL, purY, purK and purE mutants expressed three-fold higher levels of the fixNOQP operon than the wild-type strain. The derepressed expression of fixN was not observed in a purH mutant. The purH gene product catalyzes the conversion of 5-aminoimidazole-4-carboxamide ribonucleotide (AICAR) to 5-form-aminoimidazole-4-carboxamide ribonucleotide (FAICAR) and inosine. Supplementation with AICA riboside lowered the levels of fixN expression in the purF mutants. These data are consistent with the possibility that AICAR, or a closely related metabolite, is a negative effector of the production of the symbiotic terminal oxidase cbb3 in R. etli.


Subject(s)
Aminoimidazole Carboxamide/analogs & derivatives , Electron Transport Complex IV/biosynthesis , Rhizobium/genetics , Rhizobium/metabolism , Ribonucleotides/metabolism , Amidophosphoribosyltransferase/genetics , Aminoimidazole Carboxamide/metabolism , Bacterial Proteins/genetics , Cytochrome c Group/genetics , Cytochrome c Group/metabolism , Electron Transport Complex IV/genetics , Membrane Proteins/genetics , Molecular Sequence Data , Mutation , Operon , Purines/biosynthesis , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Rhizobiaceae/genetics , Rhizobiaceae/metabolism , Tetramethylphenylenediamine/metabolism , Transcription, Genetic
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