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Biomedical subjects

M Couturier

Publications and source records attributed to M Couturier.

At least 37 records · Page 2Linked to original sources

Association between novelty-seeking and the dopamine D3 receptor gene in bipolar patients: a preliminary report.

Recent studies in healthy controls suggest an association between novelty-seeking (NS) and the dopamine D4 receptor (DRD4) gene. In this study, we further investigated the relationship between genes implicated in dopamine as well as serotonin neurotransmission and personality traits in bipolar (BP) disorder. Scores on the Tridimensional Personality Questionnaire were examined in 37 recovered Research Diagnostic Criteria-diagnosed BP patients genotyped for DRD3, DRD4, and serotonin 2A receptor (5HTR2a) polymorphisms. Carriers of DRD3 allele 1 showed significantly lower NS values compared to patients without this allele. Scores on NS and on harm-avoidance were not related to DRD4 or 5HTR2a polymorphisms. These preliminary results suggest a role for D3 receptor in NS expression in BP patients.

Adult↗

Direct selection cloning vectors adapted to the genetic analysis of gram-negative bacteria and their plasmids.

A range of specific and unusual biological pathways are found in Gram-negative bacteria. It is possible to express the genes involved in these processes in Escherichia coli, however, some genes prove lethal when cloned into high copy number vectors in common usage. Conversely, various genetic functions remain silent in E. coli and require to be transferred into their original host for expression and subsequent analysis. To facilitate the cloning and the characterisation of bacterial genes, we have constructed CcdB 'positive-selection' vectors that possess one or more of the following properties: (i) low or medium copy number; (ii) narrow or broad replication host range; (iii) conjugational mobilisation. In this communication, we illustrate the use of these new cloning tools and analyse the CcdB toxicity in different bacterial species.

Bacterial Proteins↗

Bacterial death by DNA gyrase poisoning.

DNA gyrase is an essential topoisomerase that is found in all bacteria and is the target of potent antibiotics, such as the quinolones. By creating DNA lesions and inducing the bacterial SOS response, these drugs are not only highly cytotoxic but also mutagenic. Discovery and analysis of natural molecules with anti-gyrase activities, such as the CcdB or microcin B17 proteins, hold promise for understanding further topoisomerase reactions and for the design of new antibiotics.

Anti-Bacterial Agents↗

Determination of the yield of radiation-induced peroxidation of sodium linoleate in aqueous monomeric and micellar solutions.

Peroxidation of polyunsaturated fatty acids such as linoleic acid in aqueous micellar solution proceeds through a free-radical chain mechanism and is accompanied by the formation of conjugated dienes, some in the form of hydroperoxides. In the course of an investigation of radiation-induced oxidation of aqueous sodium linoleate, we have measured three indexes of peroxidation-conjugated dienes, hydroperoxides and thiobarbituric acid-reactive substances-by means of absorption spectroscopy, high-pressure liquid chromatography and spectrofluorimetry, respectively. There are linear correlations between the amounts of conjugated dienes, hydroperoxides and thiobarbituric acid-reactive substances. The radiolytic yields have been determined from the radiation dose dependence of the three markers of peroxidation as a function of sodium linoleate concentration. The results obtained indicate a strong effect of the concentrations of oxygen and linoleate on the yields of the products. The yields at different lipid concentrations display a large increase in chain propagation length; this is discussed in terms of the effect of micellar size.

Chromatography, High Pressure Liquid↗

The interaction of the F plasmid killer protein, CcdB, with DNA gyrase: induction of DNA cleavage and blocking of transcription.

We have studied the interaction of the F plasmid killer protein CcdB with its intracellular target DNA gyrase. We confirm that CcdB can induce DNA cleavage by gyrase and show that this cleavage reaction requires ATP hydrolysis when the substrate is linear DNA, but is independent of hydrolysis when negatively supercoiled DNA is used. The 64 kDa domain of the gyrase A protein, which can catalyse DNA cleavage in the presence of the B protein and quinolone drugs, is unable to cleave DNA in the presence of CcdB unless the C-terminal 33 kDa domain of the gyrase A protein is also present. CcdB-induced DNA cleavage by gyrase requires a minimum length of DNA (> approximately 160 bp), whereas in the presence of quinolone drugs gyrase can cleave much shorter DNA molecules. We show that CcdB, like quinolones, can form a complex with gyrase which can block transcription by RNA polymerase. A model for the interaction of CcdB with gyrase involving the trapping of a post-strand-passage intermediate is suggested. We conclude that CcdB can stabilise a cleavage complex between DNA gyrase and DNA in a manner distinct from quinolones but, like the quinolone-induced cleavage complex, the CcdB-stabilised complex can also form a barrier to the passage of polymerases.

Bacterial Proteins↗

Molecular analysis of RepHI1B, a replicon specific to IncHI1 plasmids.

RepHI1B is one of the replicons that is specific to IncHI1 multireplicon plasmids. Its general organization resembles that of several replicons that control their copy number by an iteron mechanism. The RepHI1B replicon (2.4 kb) contains: (i) an 882 bp repA gene coding for a 32 kDa replication protein (RepA), sharing significant similarity with the initiator proteins of other replicons belonging to various incompatibility (Inc) groups, including P1 (IncY), Rts1 (IncT), RepFIB (IncFI), and RepHI1A (IncHI1); (ii) two sets of 17 bp DNA repeats (iterons), one upstream and one downstream from repA. By complementation testing, we identified the replication origin (ori) of RepHI1B in a 223 bp locus upstream from repA. By primer extension we mapped two promoters of repA (Pr1 and Pr2) in the ori sequence. We used repA::lacZ transcriptional fusions to study regulation of the repA gene. This analysis showed that repA is transcriptionally autoregulated. Gel mobility shift assays demonstrated that RepA binds specifically to the origin and to iterons overlapping the Pr1 and Pr2 promoters. A G to A transition at nucleotide position 13 of the iteron located in Pr2 (repeat 5) drastically decreases autoregulation of repA by inhibiting binding of RepA.

Bacterial Proteins↗

Association of mutations in grlA and gyrA topoisomerase genes with resistance to ciprofloxacin in epidemic and sporadic isolates of methicillin-resistant Staphylococcus aureus.

The types of topoisomerase alterations in genomically diverse epidemic and sporadic strains of methicillin- and fluoroquinolone-resistant Staphylococcus aureus isolated from European hospitals between 1984 and 1994 were characterized. Convergent dual mutations in gyrA (codon 83, 84, or 88) and grlA (codon 79 and/or 80) were found in all strains exhibiting high-level resistance to ciprofloxacin (MIC, 16 to > or = 128 microg/ml). In some epidemic strains, the resistant phenotype and genotype appeared in the 1990s and persisted thereafter.

Anti-Infective Agents↗

Cerebrospinal fluid transthyretin: aging and late onset Alzheimer's disease.

The deposition of insoluble beta-amyloid protein fibrils is probably the central event in the pathogenesis of Alzheimer's disease. Cerebrospinal fluid inhibits this fibril formation, likely by the intervention of one or several proteins binding to soluble beta-amyloid protein. In vitro, transthyretin (TTR), a CSF protein, impedes amyloid fibrillogenesis. Lowered concentrations of CSFTTR could therefore be associated with Alzheimer's disease. Concentrations of TTR in CSF samples from 149 consecutive patients were assayed, using a kinetic nephelemetric method. These concentrations were correlated positively with age, but were significantly lower in patients with Alzheimer's disease. These data raise the possibility that amyloid fibril formation could be promoted in patients with late onset Alzheimer's disease by the lack of sufficient concentrations of TTR.

Adolescent↗

Variable glycation of serum proteins in patients with diabetes mellitus.

OBJECTIVE: To determine whether there were variations in vivo and in vitro in the glycation process among patients with diabetes mellitus and to assess the characteristics of patients with high and low glycation, if this was observed. PATIENTS: Patients (n = 185) attending a Diabetes Day Care Centre or Notre-Dame Hospital in Montreal participated in the in vivo study. Patients found to have high and low glycation were asked to allow the use of their serum for the in vitro part of the study. INTERVENTION: Capillary blood glucose levels were determined by nursing staff 4 times a day over 7.3 (standard deviation [SD]5.3) consecutive days with commercially available glucose oxydase reagent strips and meters. The ratio of the fructosamine concentration to the protein concentration (the F/P ratio) and the glycated hemoglobin were also determined at the same time as the capillary blood glucose level. Glycation was defined as the mean capillary blood glucose/F/P ratio. Patients with high and low glycation (higher or lower than [SD], of the mean) were compared. For the in vitro study, incorporation of carbon-14 glucose in serum proteins incubated with a 30-mmol/L glucose concentration was studied in some of the patients with low and high glycation. RESULTS: The mean capillary blood glucose/F/P ratio was a mean of 2.30 (SD 0.29) g/mL. Of the 185 subjects 31 had high glycation (1.46 [SD 0.19] g/mL) and 27 had low glycation (2.97 [SD 0.035] g/mL, p < 0.001). There was no significant difference in age, sex, diabetic treatment and glycated hemoglobin levels between the 2 groups. However, patients with low glycation had a greater body mass index (29.4 [SD 5.7] kg/m2 v. 26.4 [SD 4.3] kg/m2, p < 0.05). In vitro, incorporation of 14C glucose in serum proteins incubated with a 30mmol/L glucose concentration was higher in the 9 patients with high glycation than in that of the 7 with low glycation (0.031% [SD 0.03%] per gram of proteins v. 0.028% [SD 0.03%] per gram of proteins, p < 0.02). CONCLUSIONS: Glycation may vary among patients with diabetes mellitus who have similar capillary blood glucose concentrations. Glycation appears to be lower in patients with a greater body mass index. Furthermore, alternation in the glycation process itself may explain, in addition to the mean blood glucose level, the difference in fructosamine levels.

Adult↗

ATP-dependent degradation of CcdA by Lon protease. Effects of secondary structure and heterologous subunit interactions.

CcdA, the antidote protein of the ccd post-segregational killing system carried by the F plasmid, was degraded in vitro by purified Lon protease from Escherichia coli. CcdA had a low affinity for Lon (Km >/=200 microM), and the peptide bond turnover number was approximately 10 min-1. CcdA formed tight complexes with purified CcdB, the killer protein encoded in the ccd operon, and fluorescence and hydrodynamic measurements suggested that interaction with CcdB converted CcdA to a more compact conformation. CcdB prevented CcdA degradation by Lon and blocked the ability of CcdA to activate the ATPase activity of Lon, suggesting that Lon may recognize bonding domains of proteins exposed when their partners are absent. Degradation of CcdA required ATP hydrolysis; however, CcdA41, consisting of the carboxyl-terminal 41 amino acids of CcdA and lacking the alpha-helical secondary structure present in CcdA, was degraded without ATP hydrolysis. Lon cleaved CcdA primarily between aliphatic and hydrophilic residues, and CcdA41 was cleaved at the same peptide bonds, indicating that ATP hydrolysis does not affect cleavage specificity. CcdA lost alpha-helical structure at elevated temperatures (Tm approximately 50 degrees C), and its degradation became independent of ATP hydrolysis at this temperature. ATP hydrolysis may be needed to disrupt interactions that stabilize the secondary structure of proteins allowing the disordered protein greater access to the proteolytic active sites.

ATP-Dependent Proteases↗

Molecular analysis of the replication elements of the broad-host-range RepA/C replicon.

RepA/C is a replicon specific to the IncA/C incompatibility group of plasmids and was isolated recently from plasmid RA1. The sequence of this autoreplicative region was established; it contains 13 repeats, suggesting that the replicon uses iterons to control its copy number. The sequence contains two ORFs, one potentially coding for a 33-kDa protein (ORF1) and a second potentially coding for a 14-kDa protein (ORF2) (Llanes et al., 1994b). In this work, using an in vitro transcription/translation system, we detected a polypeptide whose size corresponded well to that of the deduced product of ORF1. Deletion and insertion mutation analysis showed that ORF1 is essential for replication; it encodes an initiator protein (called RepA). ORF2 was not essential for replication in Escherichia coli and its function remains to be determined. Using complementation experiments, the replication origin (ori) of RepA/C was defined. The ori was located in a 600-bp fragment downstream from repA, containing 10 direct repeats. To study the control of repA expression, a transcriptional fusion PrepA::lacZ was constructed. Its analysis showed that repA is transcriptionally autoregulated as are most repA genes of replicons controlled by iterons.

Cloning, Molecular↗

Hydroperoxides of erythrocyte phospholipid molecular species formed by lipoxygenase correlate with alpha-tocopherol levels.

The hydroperoxides corresponding to the main molecular species of phosphatidylcholine (PC) and phosphatidylethanolamine (PE) were determined after lipoxygenase treatment of erythrocyte membranes from healthy children. This work was a preliminary study prior to applying this analytical procedure to erythrocyte membranes from children with diseases associated with vitamin E deficiency. The total molecular species corresponding to 20:4 and 22:6 associated with 16:0 and 18:0 were significantly higher in PE (26.94 +/- 4.70 nmol/mg protein) than in PC (20.14 +/- 6.70 nmol/mg protein); these concentrations represented 63% of the total molecular species in PE and 22% in PC. However, the concentrations of hydroperoxides produced from these polyunsaturated fatty acid molecular species were in the same order of magnitude in PC (3.98 +/- 1.56 nmol/mg protein) and in PE (3.61 +/- 1.63 nmol/mg protein). In contrast, the molecular species concentrations containing two double bonds, such as 16:0/18:2 and 18:0/18:2 and their corresponding hydroperoxides, were clearly more elevated in PC than in PE. There was a positive relationship between the concentrations of alpha-tocopherol and each hydroperoxide of PC and PE, and this association was particularly strong in PE (P < or = 0.0001). These results suggest that alpha-tocopherol exerts a stabilizing effect toward hydroperoxides, limiting their further degradation into peroxyl radicals. The protective effect of alpha-tocopherol could be more effective in PE because more polyunsaturated fatty acids were present.

Child, Preschool↗

Fatty acid content in lymphocytes from children with syndromic paucity of interlobular bile ducts, Alagille syndrome.

Fatty acid (FA) concentrations were studied in lymphocytes isolated from children with syndromic paucity of interlobular bile ducts (PILBD), Alagille syndrome. The aim of this study was to assess whether the specific FA changes previously observed in fibroblast cultures from such patients were also present in other tissues. Lymphocyte FA, obtained both from controls and patients were studied under two experimental conditions, either after separation of the mononuclear cells or after 48 hours of culture. Freshly isolated lymphocytes from patients presented few FA changes compared to the controls. However, when patient lymphocytes were placed in culture medium for 48 hours, FA changes were amplified compared to those observed in controls; the decrease in the sum of saturated and n-6 polyunsaturated FA of total lipids was significant only in patients, and the n-3 FA of phospholipids was strikingly increased in patients (p < or = 0.001), compared to controls. These results are related to those previously observed in fibroblast cultures and suggest that placing cells in culture could reveal a pre-existing cellular abnormality in patients with PILBD.

Adolescent↗

F plasmid CcdB killer protein: ccdB gene mutants coding for non-cytotoxic proteins which retain their regulatory functions.

The ccd locus of the F plasmid codes for two gene products, CcdA and CcdB, which contribute to the plasmid's high stability by post-segregational killing of plasmid-free bacteria. Like the quinolones, the CcdB protein is a poison of the DNA-topoisomerase II complexes, while CcdA acts as an antidote against CcdB. In addition to these poison-antipoison properties, the CcdA and CcdB proteins act together at transcription level to repress their own synthesis. In this work, we have isolated, in vivo, and characterized several non-killer CcdB mutants. All missense mutations which inactivate CcdB killer activity are located in the region coding for the last three C-terminal residues. However, the resulting mutant CcdB proteins retain their autoregulatory properties. We conclude that the last three C-terminal residues of CcdB play a key role in poisoning but are not involved in repressor formation.

Bacterial Proteins↗

Positive-selection vectors using the F plasmid ccdB killer gene.

Plasmids pKIL18/19 are positive-selection cloning vectors containing an active cytotoxic ccdB gene under the control of the lacP promoter. They are derivatives of high-copy-number pUC18/19 plasmids in which the ccdB killer gene has been fused in phase downstream from the lacP MCS18 and MCS19 multiple cloning sites. When an Escherichia coli wild-type gyrA+ strain is transformed by such vectors, the ccdB gene product blocks bacterial growth. However, if ccdB is inactivated by insertion of a foreign DNA fragment, this recombinant plasmid no longer interferes with host viability. The positive selection of recombinant clones is highly efficient and bench manipulations are simplified to the utmost: E. coli transformants are plated on rich medium and only cells containing recombinant plasmids give rise to colonies. The CcdB protein is a potent poison of gyrase and the gyrA462 mutation confers total resistance to CcdB [Bernard and Couturier, J. Mol. Biol. 226 (1992) 735-745]. Therefore, pKIL18/19 vectors can be amplified and prepared in large quantities in a gyrA462 host. Like pUC vectors, pKIL vectors are designed for general cloning/sequencing procedures.

Bacterial Proteins↗

The antidote and autoregulatory functions of the F plasmid CcdA protein: a genetic and biochemical survey.

The ccd operon of the F plasmid contributes to the high stability of the episome by postsegregational killing of plasmid-free bacteria. It contains two genes, ccdA and ccdB, which are negatively autoregulated at the level of transcription, probably by a complex comprising the two gene products. Using the bacterial gyrA462 CcdB resistance mutation and a Pccd-lacZ transcriptional fusion, we have obtained evidence that the CcdB protein by itself has no regulatory activity or operator DNA-binding affinity and needs CcdA in order to effect transcriptional control. The ccd killing mechanism is based on the poison-antidote principle. The CcdB protein is cytotoxic, poisoning DNA-gyrase complexes, while CcdA antagonizes this activity. In order to define functional domains of the CcdA antidote involved in the anti-killer effect, autoregulation or both, we introduced several missense or amber mutations into the CcdA protein by directed mutagenesis. We report on missense CcdA proteins that have lost their autoregulatory properties but are still able to antagonize the lethal activity of CcdB. We show that the five carboxy-terminal amino acid residues of the antidote protein are not required for the antidote effect or for autoregulation. Several missense CcdA polypeptides were generated by suppression of nonsense codons. Two substitutions lead to CcdB-promoted killing: glutamine 33-->cysteine and glutamine 33-->phenylalanine.

Bacterial Proteins↗

Nucleotide sequence and replication characteristics of RepHI1B: a replicon specific to the IncHI1 plasmids.

The IncHI1 plasmids are multireplicon plasmids. They contain at least three autoreplicative regions, one of which is closely related to the RepFIA replicon of F. Two other IncHI1-specific replicons, RepHI1A and RepHI1B, have been recently isolated and mapped on the R27 (IncHI1) genome (P. Gabant, P. Newnham, D. Taylor, and M. Couturier, J. Bacteriol. 175, 7697-7701, 1993). In the present work, the DNA sequence of RepHI1B was determined. It reveals DNA repeats of 17 base pairs located upstream and downstream from a gene coding for a 32 kilodalton protein (RepA) required for replication. Interestingly, RepA presents significant homology with other Rep proteins encoded by plasmids belonging to different incompatibility groups: P1 (IncY), Rts1 (IncT), RepFIB (IncFI) and RepHI1A (IncHI1). All these results provide strong evidence that the RepHI1B replicon of the IncHI1 subgroup belongs to the group of plasmids which control their copy number by an iteron mechanism.

Amino Acid Sequence↗