Search PubMedSearch

Biomedical subjects

J C Robert

Publications and source records attributed to J C Robert.

At least 19 recordsLinked to original sources

Location of the cytoplasmic epitope for a K(+)-competitive antibody of the (H+,K+)-ATPase.

The monoclonal antibody (mAb) 95-111 binds the alpha subunit of (H+,K+)-ATPase and inhibits the K(+)-ATPase activity. To map the epitope, all of the partial sequences of the alpha subunit were expressed in Escherichia coli HB101 using rabbit alpha subunit cDNA restriction fragments ligated into PuEx vector. Bacterial recombinant lysates were separated by sodium dodecyl sulfate-gel electrophoresis, and the epitope was detected by Western blotting. The antibody site was mapped between Cys529 and Glu561. This is close to the Lys517 that binds fluorescein isothiocyanate (FITC) and is considered to be between M4 and M5 close to the ATP binding domain. However, the mAb inhibition of ATPase is not ATP-competitive but is K(+)-competitive with a KI of 2 x 10(-9) M. The mAb also inhibits K+ quench of FITC fluorescence competitively with a KI of 8 x 10(-9) M. The K+ activation of ATPase activity and quench of FITC fluorescence are dependent on K+ binding to an E2 form of the enzyme from the extracytoplasmic surface. The mAb epitope is cytoplasmic since the K(+)-ATPase activity of ion-tight gastric vesicles is inhibited. The 125I-mAb 95-111 binds to a single class of sites with an apparent KD of 2.3 +/- 0.8 x 10(-9) M and K+ does not displace bound mAb. Hence, antibody binding to a cytoplasmic Cys529-Glu561 epitope allosterically competes with K(+)-dependent reactions at extracytoplasmic sites.

Adenosine Triphosphate

Immunopurification of gastric parietal cell tubulovesicles.

1. The tubulovesicles of hog and rabbit gastric parietal cells were immunopurified from microsomes using monoclonal antibodies against the (H+, K+)-ATPase. 2. The best yields of immunoprecipitation were obtained with an ATPase/mAb molar ratio of 0.3: the immunoprecipitate contained 79 and 90% of the hog and rabbit microsomal PNPPase activity respectively and K(+)-stimulated ATPase specific activity was 221 +/- 29 mumoles Pi per hr and per mg of membrane protein. 3. The immunoprecipitate contained vesicles that were 85% cytoplasmic-side out, like tubulovesicles in vivo, demonstrating that the epitopes were cytoplasmic. 4. The alpha-beta protomer of (H+, K+)-ATPase accounted for 80 +/- 12% of the immunopurified proteins. 5. The major other proteins ran at 80, 75, 69, 57, 47, 44, 39, 34 and 32 kDa on the SDS-PAGE. 6. Comparative analysis between sucrose-gradient purified fractions and immunopurified tubulovesicles demonstrated that carbonic anhydrase and actin were contaminants and that the 53 kDa and presumably the 50 kDa bands of the gradient fraction were alpha and beta subunits of F1 ATPase.

Adenosine Triphosphatases

[Münchhausen syndrome].

Münchhausen's syndrome is characterized by fictitious illnesses associated with hospital peregrination, pseudologia fantastica with a mythomanic discourse that includes strongly structured medical elements, passivity and dependance at examinations, and aggressiveness. The whole picture is so typical that the syndrome can easily be recognized. Cases of Münchhausen's syndrome by proxy (Meadow's syndrome) have been reported during the last few years; the condition concerns children suffering from diseases which are entirely due to their parents and can be compared with the battered child syndrome. In terms of nosology, among pathomimias Münchhausen's syndrome figures as a borderline state. Since it is impossible to establish positive relations with these patients, treatment fails in almost every case.

Adolescent

[Bacterial periodontal plaque in childhood. Literature review].

Bacterial colonization is investigated: before eruption, in primary dentition, mixed dentition and permanent dentition, with and without gingival inflammation. Microorganisms such as spirochetes and Black pigmented Bacteroides are implicated in the periodontal disease. These germs arrive later than teeth and their importance grows with age and gingival inflammation. Different reviews have emphasised the potential role of specific pathogens in the aetiology of periodontitis. The plaque composition of necrotizing ulcerative gingivitis and periodontitis in their pre and post pubertal forms, localized and generalized is investigated. A actinomycetemcomitans, B. intermedius and spirochetes can be isolated from children having destructive periodontal disease. Changes in flora can then be explained.

Adolescent

Use of scanning electron microscopy to investigate dental calculus in dogs.

The formation of dental calculus in dogs is a major problem. Scanning electron microscopy of tartar specimens from dogs revealed on the outer surface of the plaque polymorphic configurations, more or less arranged as free filaments, corn-cobs or swab-like structures. Uninhabited bacterial recesses were found on the inner surface of the calculus. Calcification may occur between or within the bacteria. Elucidating the mechanisms of calculus formation should help in the development of prophylactic measures.

Actinomyces

H+/K(+)-ATPase contents of human, rabbit, hog and rat gastric mucosa.

A monoclonal antibody (mAb 95-111) was used to titrate the amounts of H+/K(+)-ATPase in subcellular fractions of the fundus of rats, pigs, rabbits and humans. All four had similar amounts of H+/K(+)-ATPase: 2.1 +/- 0.5 (human), 1.9 +/- 0.4 (rabbit), 4.4 +/- 0.5 (rat) and 4.2 +/- 0.8 (hog) mg ATPase/g wet tissue. The antigen concentrations and H+/K(+)-ATPase enzymatic activities of subcellular fractions were linearly correlated in all species but rat suggesting that human, rabbit and hog H+/K(+)-ATPases have similar rates of catalysis (223 mumol Pi/h per mg ATPase). The non-correlation of rat data probably reflects the known lability of the rat enzyme. Hence, immuno-titration promises to be a more reliable method of estimating rat ATPase than the currently used enzymatic assay. The H+/K(+)-ATPase content of human biopsies was 20-fold higher than previously-published (Smolka, A. and Weinstein, W.M. (1986) Gastroenterology 90, 532-539) suggesting that the previous immuno-titration underestimated the H+/K(+)-ATPase content of the human fundus.

Adenosine Triphosphatases

[Types of interbacterial coaggregation in dental plaque].

Scanning electron microscopic observations of teeth-gingiva fragments removed among children or dogs made an important contribution to our knowledge of the composition of the microbial flora in gingival crevice. It was possible to appreciate special relationships between forms as "corn-cob" or "bristle brush" arrangements. The development of these formations were observed: coccal form apposition preceded corn-cob organization; abundant extra-cellular amorphous material preceded bristle brush arrangement. Inter or/intra bacterial calcification models are proposed to explain calculus formation.

Animals

[A comparison of culture and immunofluorescence technics in the study of Bacteroides with black pigmentation].

The aim of that study was to compare culture and immunofluorescence (IF) methods to determine whether B. gingivalis and other B.P.B. can be detected in subgingival plaque of children. Samples were collected from the lingual sulcus of mandibular incisors, dispersed and diluted from 1 to 10(-5); 15 microliters of each dilution were plated on Trypticase soja agar and Todd-Hewitt agar supplemented with blood, Vit K 1 and hemin. The same dilutions were smeared on glass slides for indirect IF using an species-specific polyclonal rabbit whole cell antiserum to B. gingivalis ATCC 33 277. Representative colonies producing brown-to-black pigment were isolated, purified and further characterized. Using culture, BPB were detected in 46% of children (19/41). B. gingivalis was cultured from 6 children. Using immunofluorescence test (Fluotec*), 90% of 309 children 3 years old and more harbour detectable B.P.B., but B. gingivalis don't react with that test. B. gingivalis were detected by immunofluorescence in 72% of children (30/41) in the incisor plaque.

Adolescent

A monoclonal antibody which inhibits H+/K(+)-ATPase activity but not chloride conductance.

A mouse monoclonal antibody was raised against hog gastric membranes. This antibody (95-111 mAb) has a very high affinity for the 95 kDalton band of H+/K(+)-ATPase-enriched membranes, and does not react with Na+/K(+)-ATPase. The epitope is located on the tubulovesicles and canaliculi of the parietal cells. The 95-111 mAb also inhibits the ATP hydrolytic activity, decreases the steady-state phosphorylation level and inhibits the phosphatase activity of H+/K(+)-ATPase, strongly suggesting that the epitope is on the catalytic subunit of H+/K(+)-ATPase. The 95-111 mAb also recognizes rat, rabbit and human gastric H+/K(+)-ATPase. This mAb differs from the H+/K(+)-ATPase-inhibiting mAb previously described (Asano et al. (1987) J. Biol. Chem. 262, 13263-13268), in that it does not inhibit the chloride conductance opened by Cu-o-phenanthroline in gastric vesicles.

Adenosine Triphosphatases

The ontogeny of rat gastric H+/K+-ATPase.

The ontogeny of rat H+/K+-ATPase was studied between foetal day 18 and neonatal day 18, using a specific monoclonal antibody (95-111 mAb). The H+/K+-ATPase content of gastric subcellular membranes was assayed and the ATPase subunits were characterized by Western blot. The epithelium density in parietal cells was measured by immunohistochemistry. H+/K+-ATPase was present in the 18-day-old foetuses and parietal cells were detected on foetal day 19. The H+/K+-ATPase concentration remained stable from foetal day 18 to neonatal day 1, while the parietal cell density increased 2.5-fold. The H+/K+-ATPase concentration increased by 2.5-fold on day 6, then remained constant up to day 18. The parietal cell density remained unchanged during this period, suggesting that the concentration increase on day 6 was due to an increase in parietal cell ATPase content. The 95-111 mAb recognized a 95 kDa single band on foetal day 18 and a doublet at all the other stages of development. Previous studies had demonstrated that acid secretion drops critically at day 12 post partum in the rat and that H+/K+-ATPase activity is lost. The present study demonstrates that the H+/K+-ATPase is, however, present on day 12.

Adenosine Triphosphatases

[Pharmacokinetics and antibiotic therapy of the child].

Pharmacokinetics is too often unknown while ordering antibiotics, particularly to children. The aim of that paper is to recall the pharmacokinetic characteristics of the most ordered families in pediatric dentistry: penicillin A and macrolides, as well as the modifications peculiar to children, due to pathology, or subsequent to drug interactions.

Anti-Bacterial Agents

Thiophosphorylation of hog gastric (H+ + K+)-ATPase membranes by endogenous protein kinases.

(H+ + K+)-ATPase-enriched membranes from hog stomachs were tested for their capacity to autophosphorylate using [gamma-32P]ATP or [gamma-35S]ATP[S] as phosphate donors. The radioactive polypeptides were characterized by SDS-PAGE. In the presence of Mg2+ and 5 microM [gamma-32P]ATP, rapid and transient incorporation of 32P occurred at 0 degrees C. Radioactivity was essentially found in the major polypeptide of the material, the 95 kDa subunit of (H+ + K+)-ATPase. Under the same experimental conditions, thiophosphorylation was slower and reached a plateau within 1 h. Incorporation levels were higher with manganese than with magnesium. After one hour at 0 degrees C, and in the presence of 10 mM manganese and 5 microM ATP[S], 0.58 +/- 0.06 nmoles of thiophosphate were incorporated per mg of protein. Twenty seven percent of the thiophosphorylated amino acids were acylphosphates i.e. likely to be the ATPase thiophosphointermediate. The remaining thiophosphorylated amino acids (73%) were thought to be produced by protein kinases. This was supported by the autoradiographies of membrane SDS-PAGE which indicated that, in addition to the 95 kDa ATPase subunit, other polypeptides were thiophosphorylated especially at 108, 58, 47, 45 and 36-40 kDa. A previous study had provided strong evidence that chloride transport in gastric microsomes, is modulated by a protein kinase-dependent phosphorylation (Soumarmon, A., Abastado, M., Bonfils, S. and Lewin M.J.M. (1980) J. Biol. Chem. 255, 11682-11687). In the present work, we demonstrate that the peptidic inhibitor of cAMP-dependent protein kinases decreased thiophosphorylation of a 45 kDa polypeptide. We suggest that this polypeptide could be regarded as a candidate for the role of chloride transporter or chloride transport regulator.

Animals

Depolymerization of solubilized gastric (H+ + K+)-ATPase by n-octylglucoside or cholate.

We have previously shown that an active (H+ + K+)-ATPase can be extracted from gastric apical membranes using n-octylglucoside (Soumarmon, A., Grelac, F. and Lewin, M.J.M. (1983) Biochim. Biophys. Acta 732, 579-585). This extract contained an holomeric enzyme of 390-420 kDa and contained 68% of the K+-stimulated ATPase specific activity originally present. We demonstrate here that inactivation, induced during a more classically designed protocol, is associated with the appearance of smaller, polymorphic structures with molecular mass of 330-360 and 240-250 kDa estimated using molecular sieve chromatography and glycerol gradients. This suggests that (H+ + K+)-ATPase solubilization by n-octylglucoside is a complex process involving first extraction of the enzyme as an active polymer, with subsequent depolymerication and inactivation of this polymer. Depolymerization was specifically studied by treating the large holomeric n-octylglucoside-extracted (H+ + K+)-ATPase with increasing concentrations of either n-octylglucoside or cholate. Detergent-induced changes were characterized by centrifugation on glycerol gradients. Progressive displacement of ATPase activity into three different peaks at 32%, 26% and 20% glycerol was found with increasing detergent concentrations. n-Octylglucoside inhibited enzyme activities and was more deleterious for phosphatase than for ATPase activity. Moreover, it induced the dissociation of phosphatase and ATPase distribution profiles. At concentrations of 0.2 to 1.15%, cholate induced the displacement of the glycerol gradient profiles but no loss of activities and no dissociation of phosphatase and ATPase profiles. Higher concentrations of this detergent (2.5%) also inactivated the ATPase concomitantly with the appearance of a protein peak with no related activity at 16-18% glycerol. From this study we suggest that solubilization of gastric (H+ + K+)-ATPase can be achieved through the extraction of a polymer by n-octylglucoside and through subsequent depolymerization using cholate. We suggest that the different sizes correspond to monomers, dimers, trimers and perhaps tetramers. The monomers were apparently inactive under present test conditions.

4-Nitrophenylphosphatase

[The relationship between udder secretion and the content of blood energy nutriments and nitrogen in the goat at the onset of lactation].

An experiment was performed on 29 dairy goats at the onset of lactation; energy and protein deficits were maximal during the first week of lactation. This was confirmed for energy by the plasma contents on non-esterified fatty acids (NEFA), beta-OH-butyrate and glucose. However, protein deficit was more critical during the second week, as shown by plasma urea, glycine and 3-CH3-histidine contents. At that time, nutritional status depended more on udder production than on intake level. Moreover, the nutritional parameters of body lipid and protein mobilization were positively correlated. Milk protein content was positively correlated with the nutritive balance and status of the goats.

3-Hydroxybutyric Acid

Gastric microsomal NADH-cytochrome b5 reductase: characterization and solubilization.

NADH-cytochrome b5 reductase from hog gastric microsomes was studied with respect to substrate dependence, optimum pH, thermal denaturation as well as anti-cytochrome b5 antibodies and different ions. The reduction of potassium ferricyanide by the enzyme was specific for NADH. Using potassium ferricyanide or trypsin-solubilized liver cytochrome b5 (Tb5) as substrates, enzyme activity was inhibited by ADP and to a lesser extent by ATP. Tb5- (but not ferricyanide-) reductase was activated by ionic strength up to 0.05 ion equivalent per liter and inhibited at higher strengths whatever the ion used (Cl-, Na+, Ca2+, Mg2+). Enzyme solubilization occurred with Triton X100. The solubilization increased the Tb5- (but not the ferricyanide-) reductase activity up to a Triton:protein ratio of 15. We therefore suggest that gastric microsomes contain a Triton soluble membrane-bound NADH cytochrome b5 reductase which is in many respects similar to the liver and red cell enzymes.

Animals

Determination of 3 methyl-L-histidine in human urine by ion exchange high performance liquid chromatography. Applications to patients in post-operative surgical care.

A new chromatographic procedure is proposed for measuring 3 methyl-L-histidine (3 MH) in human urine. The sample was purified on a cation-exchange resin (AGR 50W-X4) and analysed by ion exchange high performance liquid chromatography on a PARTISIL 10 SCX Whatman column in UV light at 210 nm within 16 min. This procedure gave similar outputs of 3 MH to those described in human normal urine (mean +/- SEM = 213 +/- 15 mumol X 24 h-1, n = 19). It was used to measure the urinary outputs of 3 MH of five patients admitted to an intensive surgical care unit, for 48, 28, 25, 15 and 10 days, respectively. The urinary outputs of 3 MH were normal or lower than normal. The 10(3) urinary 3 MH/creatinine molar ratios were also calculated; this new 3 MH analysis could help the reanimator to prescribe an adequate nutritional assessment.

Adolescent