PubMed Health⌕ Search

Biomedical subjects

C Fleury

Publications and source records attributed to C Fleury.

At least 37 records · Page 2Linked to original sources

Deletion of amino acids 261-269 in the brown fat uncoupling protein converts the carrier into a pore.

The uncoupling protein (UCP) from brown adipose tissue mitochondria is a carrier that catalyzes proton re-entry into the matrix and thus dissipates the proton electrochemical potential gradient as heat. UCP activity is regulated: purine nucleotides inhibit while fatty acids activate transport. We have previously reported that sequence 261-269 of the UCP has a closely related counterpart in the adenine nucleotide translocator, as well as in the DNA binding domain of the estrogen receptor. Site-directed mutagenesis of the UCP showed that deletion of amino acids 267-269 in the UCP abolished nucleotide inhibition [Bouillaud, F., et al. (1994) EMBO J. 13, 1990-1997]. Complete deletion of the homologous domain (UCPDelta9) produced a highly deleterious mutant that collapsed the mitochondrial membrane potential and halted yeast growth. Since under our growth conditions revertants appeared rapidly, it was not possible to characterize this mutant. In this article, we have designed conditions to isolate mitochondria containing significant amounts of the UCPDelta9 mutant protein. These mitochondria show no respiratory control and are insensitive to nucleotides. Investigation of the permeability properties revealed that UCPDelta9 mitochondria swell rapidly in potassium salts in the absence of valinomycin, thus indicating a loss of specificity. The size exclusion properties of this mutant were determined with polyethylene glycols of various molecular masses (400-20000 Da), and it was found that UCPDelta9 can catalyze permeation of molecules of up to 1000 Da. We conclude that the deletion of amino acids 261-269 converts the UCP into an unspecific pore.

Biological Transport↗

Kupffer cells are a dominant site of uncoupling protein 2 expression in rat liver.

The mechanisms underlying thermogenesis in liver are not well understood. They may involve proteins related to the mitochondrial uncoupling protein (UCP1) of brown adipocytes. In this paper, it is demonstrated that UCP1 is not expressed in any liver cell type of rat while UCP2, a recently cloned homologue of UCP1, is expressed at a very high level in Kupffer cells but not in hepatocytes. This high level of expression of UCP2 in Kupffer cells allowed cross immunoreactivity with antibodies directed against UCP1. This cross reactivity was confirmed by the detection of UCP2 with anti-UCP1 antibody, in western blotting analysis of transfected yeasts expressing rat UCP2. The high level expression of UCP2 in Kupffer cells suggests a particular function of UCP2 in macrophages.

Animals↗

Uncoupling protein-2: a novel gene linked to obesity and hyperinsulinemia.

A mitochondrial protein called uncoupling protein (UCP1) plays an important role in generating heat and burning calories by creating a pathway that allows dissipation of the proton electrochemical gradient across the inner mitochondrial membrane in brown adipose tissue, without coupling to any other energy-consuming process. This pathway has been implicated in the regulation of body temperature, body composition and glucose metabolism. However, UCP1-containing brown adipose tissue is unlikely to be involved in weight regulation in adult large-size animals and humans living in a thermoneutral environment (one where an animal does not have to increase oxygen consumption or energy expenditure to lose or gain heat to maintain body temperature), as there is little brown adipose tissue present. We now report the discovery of a gene that codes for a novel uncoupling protein, designated UCP2, which has 59% amino-acid identity to UCP1, and describe properties consistent with a role in diabetes and obesity. In comparison with UCP1, UCP2 has a greater effect on mitochondrial membrane potential when expressed in yeast. Compared to UCP1, the gene is widely expressed in adult human tissues, including tissues rich in macrophages, and it is upregulated in white fat in response to fat feeding. Finally, UCP2 maps to regions of human chromosome 11 and mouse chromosome 7 that have been linked to hyperinsulinaemia and obesity. Our findings suggest that UCP2 has a unique role in energy balance, body weight regulation and thermoregulation and their responses to inflammatory stimuli.

Adipose Tissue↗

Sources of variation in isolation rate of Giardia lamblia cysts and their homogeneous distribution in river water entering a water treatment plant.

The objective of this work was to determine if differences in the number of Giardia cysts measured in river water were due to the method itself, the analyst, or real differences in the distribution of these cysts in water. To minimize the methodological differences, centrifugation only was used as the primary concentration method. Differences were observed between results from different analysts and they were identified as technical errors. Once the method had been well established, cysts were found to be distributed homogeneously in the river water tested. Small differences were observed among samples collected sequentially at the same time, as well as for samples collected on different days or at different times on the same day. The differences reported in the literature in the number of Giardia cysts detected in water samples from the same site could be an artifact of the methods more than true differences in the counts.

Animals↗

Essential cis-acting elements in rat uncoupling protein gene are in an enhancer containing a complex retinoic acid response domain.

Transgenic mice were generated with a transgene containing the 211-base pair (bp) enhancer and 0.4 kilobase pairs of 5'-flanking DNA of the uncoupling protein (ucp) gene. Expression of this transgene was restricted to brown adipose tissue and was inducible by cold exposure or treatment of transgenic mice by norepinephrine, retinoic acid (RA), or CL-316,243 beta3-adrenoreceptor agonist. A search for retinoic acid response elements in the ucp gene enhancer was undertaken using mutagenesis and transfection of cultured cells with chloramphenicol acetyltransferase constructs. Deletion or mutations of several putative retinoic acid response elements were ineffective. Mutations of a TGAATCA region dramatically decreased the transcriptional activity in the presence of RA. In vitro this region was able to bind a complex containing proteins recognized by antibodies against Jun or Fos. Mutations of an adjacent region related to an inverted repeat of type 2 also markedly decreased RA effect. This region was able to bind in vitro retinoid X receptor alpha and retinoic acid receptor beta. The two regions form an activating region between bp -2421 and -2402 (referred to as the ucp gene-activating region), which has an enhancer activity but cannot confer RA response to a promoter. This response was obtained with a larger DNA fragment (bp -2489 to -2398) constituting a complex RA response domain.

Adipose Tissue, Brown↗

Activation of the uncoupling protein by fatty acids is modulated by mutations in the C-terminal region of the protein.

The transport properties of the uncoupling protein (UCP) from brown adipose tissue have been studied in mutants where Cys304 has been replaced by either Gly, Ala, Ser, Thr, Ile or Trp. This position is only two residues away from the C-terminus of the protein, a region that faces the cytosolic side of the mitochondrial inner membrane. Mutant proteins have been expressed in Saccharomyces cerevisiae and their activity determined in situ by comparing yeast growth rates in the presence and absence of 2-bromopalmitate. Their bioenergetic properties have been studied in isolated mitochondria by determining the effects of fatty acids and nucleotides on the proton permeability and NADH oxidation rate. It is revealed that substitution of Cys304 by non-charged residues alters the response of UCP to fatty acids. The most effective substitution is Cys for Gly since it greatly enhances the sensitivity to palmitate, decreasing threefold the concentration required for half-maximal stimulation of respiration. The opposite extreme is the substitution by Ala which increases twofold the half-maximal concentration. We conclude that the C-terminal region participates in the fatty acid regulation of UCP activity. The observed correlation between yeast growth rates in the presence of bromopalmitate and the calculated activation constants for respiration in isolated mitochondria validates growth analysis as a method to screen the in situ activity of UCP mutants.

Amino Acid Sequence↗

[Comparison of polyurethane and polyethylene for central venous catheter in intensive care units].

Polyurethane (PU) and polyethylene (PE) central venous catheters were compared for their respective responsabilities in catheter related sepsis (CRS). From may 1988 to may 1989, 300 central venous catheters were inserted. Insertion sites were freely chosen by physicians. The polymer type was randomized. Catheters were removed after 10 days in place. Microbial loads were assessed on insertion sites, catheter hubs and tips, and blood drawn through the catheters lumen. One hundred eighty three catheters were available for complete evaluation (101 PE, 82 PE). Eleven were responsible for CRS, 4 were colonized (BB3 according to Brun-Buisson's classification), 19 were contaminated (BB2), and 149 were sterile (BB1). When comparing the "infected" group (CRS+BB3) and the "noninfected" (BB2 + BB1), no difference appeared between the tested polymers. CRS were significantly associated with insertion into the internal jugular vein. It seems useless to exclude from clinical practice any of the biomaterials tested.

Biocompatible Materials↗

[Human parvovirus B19 infection during pregnancy. 2 cases].

We report two cases of non immunologic hydrops fetalis associated with intra-uterine human parvovirus B19 (PV B19) infection. The outcome was stillbirth in both cases. Infection by PV B19 was suspected by the presence of intranuclear inclusions in fetal erythroblasts. It was confirmed by the presence of specific immunoglobulins M (IgM) against PV B19 in maternal sera. Intra-uterine infection with human PV B19 is known since 1984; this virus may cause non immunologic hydrops fetalis and stillbirth; teratogenic effects have also been suggested. Epidemiological studies, published in 1988 and 1990 have evaluated the risk of PV B19 fetal related death at 9% and no association was found between infection and congenital anomalies. Subsequent management of infected pregnancies is studied. We emphasize the interest of pathological examination of hydropic stillbirth for this diagnosis.

Adult↗

[The mammary gland: target organ for infection with the caprine arthritis and encephalitis virus].

Fifteen goats, culled from herds in which infection with caprine arthritis-encephalitis virus (CAEV) was important, were studied. Eleven animals presented, at clinical examination, the signs ('hard udder' and lymphoid nodes hyperplasia) of a subclinical viral mammary infection confirmed by the interstitial accumulation of lymphocytes and the presence of CAEV in the mammary gland. Lactation induced in 2 goats suggests that the viral expression depends on the physiological status of the udder. This study helps to support that the mammary gland is an important target organ for infection with CAEV and underlines the advantage of heated colostrum and proper milking management for preventing CAEV transmission.

Animals↗

[Not just stickers].

Explore the source record for details and available documents.

Community Health Services↗

[Evaluation of the cytotoxicity of an antiseptic by a photometric micromethod].

Cytotoxicity of an antiseptic is usually evaluated by microscopic examination of a cell culture, after a set time of contact with the antiseptic. As this evaluation is largely subjective, a photometric method is proposed. The procedure consists in staining the cells by methylene blue after contact with the ATS and measuring the dye in a photometer after elution. Different dilutions of ATS are added to a 24 h-monolayer of Vero cells in a 96-well microtissue culture plate (8 wells for each dilution, 8 wells for cell control, and 8 wells for control of dye fixation by the plastic plate). The plate is incubated for three days at 37 degrees C in an atmosphere of 5% CO2 and 95% air. The plate is washed with PBS to remove dead cells and adherent cells are fixed. The plate is then washed with borate buffer and allowed to dry. The dye is eluted by adding 200 microliter of HCl 0.1 N to each well. The plate is then read automatically at 650 nm on a Titertek Multiskan, a vertical light path photometer. Cytotoxicity is expressed as the percentage of damaged cells as compared to control wells. Cytotoxic assay of glutaraldehyde shows that this technique is more reliable and more sensitive than microscopic examination. Moreover, result of cytotoxic assay and of a method consisting in measurement of protein in residual cells after exposure to ATS are significantly correlated.

Animals↗