PubMed Health⌕ Search

Biomedical subjects

J Cloutier

Publications and source records attributed to J Cloutier.

12 recordsLinked to original sources

Unusual methyl-branched alpha,beta-unsaturated acyl chain substitutions in the Nod Factors of an arctic rhizobium, Mesorhizobium sp. strain N33 (Oxytropis arctobia).

Mesorhizobium sp. strain N33 (Oxytropis arctobia), a rhizobial strain isolated in arctic Canada, is able to fix nitrogen at very low temperatures in association with a few arctic legume species belonging to the genera Astragalus, Onobrychis, and Oxytropis. Using mass spectrometry and nuclear magnetic resonance spectroscopy, we have determined the structure of N33 Nod factors, which are major determinants of nodulation. They are pentameric lipochito-oligosaccharides 6-O sulfated at the reducing end and exhibit other original substitutions: 6-O acetylation of the glucosamine residue next to the nonreducing terminal glucosamine and N acylation of the nonreducing terminal glucosamine by methyl-branched acyl chains of the iso series, some of which are alpha,beta unsaturated. These unusual substitutions may contribute to the peculiar host range of N33. Analysis of N33 whole-cell fatty acids indicated that synthesis of the methyl-branched fatty acids depended on the induction of bacteria by plant flavonoids, suggesting a specific role for these fatty acids in the signaling process between the plant and the bacteria. Synthesis of the methyl-branched alpha,beta-unsaturated fatty acids required a functional nodE gene.

Acyltransferases↗

Sequence and mutational analysis of the 6.7-kb region containing nodAFEG genes of Rhizobium sp. strain N33: evidence of DNA rearrangements.

A 6.7-kb region upstream of nodBC genes in Rhizobium sp. strain N33 was shown to contain the nodAFEG genes and an open reading frame designated orfZ. The open reading frames for these genes contain 591, 282, 1209, 738, and 1,338 nucleotides respectively. Homologues of these genes were found in other rhizobia with the exception of orfZ, for which there was no counterpart found in the Genbank/EMBL database. Tn5 mutagenesis in nodEG and in the intergenic nodG-B region has shown a Nod+ phenotype on their temperate hosts Onobrychis viciifolia and Astragalus cicer. The nodules formed on O. viciifolia plants by these mutants were altered in shape and size. However, on A. cicer there was only a reduction in the number of nodules formed, compared with the wild-type strain. Sequence analysis of the orfZ-nodA and nodG-B intergenic regions indicates the presence of truncated nodD genes.

DNA Mutational Analysis↗

Sequence and mutational analysis of the common nodBCIJ region of Rhizobium sp. (Oxytropis arctobia) strain N33, a nitrogen-fixing microsymbiont of both arctic and temperate legumes.

By heterologous hybridization, we have identified the common nodulation genes nodBCIJ of Rhizobium sp. strain N33 within a 8.2-kb PstI fragment. The nodBCIJ genes are located within a 4,620-bp region which also included a consensus nod box promoter. The four open reading frames coding for the nodBCIJ genes contain 657, 1,353, 915, and 789 nucleotides, respectively. We found that the nodA gene was not adjacent to the nodB gene, unlike the situation in many rhizobia. The DNA of the nodBCIJ genes of Rhizobium sp. strain N33 were found to be homologous to the corresponding genes of other rhizobia except for the 3'-coding region of the nodC gene. The deduced NodC protein was the longest of the rhizobia except Bradyrhizobium japonicum. Tn5 mutagenesis of the common nod region of strain N33 revealed that the nodBC genes were essential for nodulation on their temperate hosts Onobrychis viciifolia and Astragalus cicer. By contrast, mutations in the nodI and nodJ genes produced a Nod+ phenotype with a reduced number of nodules on the temperate hosts. Nodules formed on Onobrychis viciifolia by either nodI or nodJ mutants were approximately 10 times smaller than nodules formed by the wild type strain: this reduction in nodule size was not observed on Astragalus cicer.

Amino Acid Sequence↗

Heat and cold shock protein synthesis in arctic and temperate strains of rhizobia.

We compared heat shock proteins (HSPs) and cold shock proteins (CSPs) produced by different species of Rhizobium having different growth temperature ranges. Several HSPs and CSPs were induced when cells of three arctic (psychrotrophic) and three temperate (mesophilic) strains of rhizobia were shifted from their optimal growth temperatures (arctic, 25 degrees C; temperate, 30 degrees C) to shock temperatures outside their growth temperature ranges. At heat shock temperatures, three major HSPs of high molecular weight (106,900, 83,100, and 59,500) were present in all strains for all shock treatments (29, 32, 36.4, 38.4, 40.7, 41.4, and 46.4 degrees C), with the exception of temperate strains exposed to 46.4 degrees C, in which no protein synthesis was detected. Cell survival of arctic and temperate strains decreased markedly with the increase of shock temperature and was only 1% at 46.4 degrees C. Under cold shock conditions, five proteins (52.0, 38.0, 23.4, 22.7, and 11.1 kDa) were always present for all treatments (-2, -5, and -10 degrees C) in arctic strains. Among temperate strains, five CSPs (56.1, 37.1, 34.4, 17.3, and 11.1 kDa) were present at temperatures down to 0 degrees C. The 34.4- and the 11.1-kDa components were present in all temperate strains at -5 degrees C and in one strain at -10 degrees C. Survival of all strains decreased with cold shock temperatures but was always higher than 50%. These results show that rhizobia can synthesize proteins at temperatures not permissive for growth. In all shock treatments, no correspondence between the number of HSPs or CSPs produced and rhizobial survival was found.(ABSTRACT TRUNCATED AT 250 WORDS)

Adaptation, Biological↗

Diagnosis of partial rupture of tendo Achillis with magnetic resonance imaging.

This manuscript presents a case with diagnosis of a partial rupture of the Achilles tendon performed with magnetic resonance imaging (MRI) at 1.5 T. Diagnosis of partial rupture of Achilles tendon is rarely reported with the use of MRI. While other means do exist, MRI can be the most useful noninvasive technique of diagnosing a partial rupture. A 62-year-old male runner with chronic Achilles tendon pain is reported, for which MRI tests were performed. Normal MRI of a volunteer patient is included for comparison. The authors suggest, where applicable, the MRI test should be performed to evaluate Achilles tendon credibility, both as a diagnostic tool and an evaluator of treatment during follow-up visits.

Achilles Tendon↗