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E Tomas

Publications and source records attributed to E Tomas.

At least 19 recordsLinked to original sources

Rab11 is associated with GLUT4-containing vesicles and redistributes in response to insulin.

AIMS/HYPOTHESIS: To identify a GTPase of 24,000 M(r) which we recently found to co-localize with GLUT4 in cardiac muscle. METHODS: A 24,000 M(r)-GTP-binding fraction was purified from pig heart by a three-step chromatographic procedure, followed by two-dimensional electrophoresis and electrospray ionization-mass spectrometry. Subcellular distribution of the GTPase was assessed by western blotting. Co-localization with GLUT4 was assessed by continuous sucrose density gradient fractionation and immunoadsorption of GLUT4-containing vesicles. RESULTS: The Rab11 protein was identified as a major component of the GTP-binding fraction and its expression in rat cardiac muscle was confirmed. In vivo insulin treatment resulted in the recruitment of Rab11 from the microsomal fraction to the plasma membrane. Subcellular fractionation indicated two immunoreactive GLUT4 pools. Most of the intracellular pool of Rab11 overlapped with the high-density GLUT4 pool and most of the transferrin receptor pool. The Rab11 protein also co-sedimented with the low-density, non-endosomal GLUT4 pool and substantially increased in this fraction after insulin treatment. It was specifically present in GLUT4-containing vesicles and insulin increased its abundance in these vesicles 2.2-fold relative to the amount of GLUT4. These vesicles also containend Rab4 and Akt-2, the latter being only associated after insulin stimulation. Insulin was unable to alter the cellular localization of Rab11 in insulin-resistant obese Zucker rats. CONCLUSION/INTERPRETATION: These results support the hypothesis that at least two GTPases of the Rab family participate in GLUT4-vesicle trafficking. We suggest that Rab11 is involved in the endosomal recycling, sorting and exocytotic movement of the glucose transporter.

Animals↗

Lack of evidence from HPLC 32P-post-labelling for tamoxifen-DNA adducts in the human endometrium.

Tamoxifen is associated with an increased incidence of endometrial cancer in women. It is also a potent carcinogen in rat liver and forms covalent DNA adducts in this tissue. A previous study exploring DNA adducts in human endometria, utilizing thin layer chromatography 32P-postlabelling, found no evidence for adducts in tamoxifen-treated women [Carmichael,P.L., Ugwumadu,A.H.N., Neven,P., Hewer,A.J., Poon,G.K. and Phillips,D.H. (1996) Cancer Res., 56, 1475-1479]. However, subsequent work utilizing HPLC 32P-post-labelling [Hemminki,K., Ranjaniemi,H., Lindahl,B. and Moberger,B. (1996) Cancer Res., 56, 4374-4377] suggested that very low levels could be detected. We have sought to investigate this question further by reproducing the HPLC methodology at two centres, and analysing endometrial DNA from 20 patients treated with 20 mg/day tamoxifen for between 22 and 65 months. Liver DNA isolated from tamoxifen-treated rats was used as a positive control. We found no convincing evidence for tamoxifen-derived DNA adducts in human endometrium. HPLC elution profiles of post-labelled DNA from tamoxifen-treated women were indistinguishable from those obtained with DNA from 14 untreated women and from six women taking toremifene, an analogue of tamoxifen.

Aged↗

Penicillin allergy: anti-penicillin IgE antibodies and immediate hypersensitivity skin reactions employing major and minor determinants of penicillin.

300 children considered to have had adverse reactions to penicillin were examined. Informed consent was obtained from the parents. Skin tests were conducted by the scratch/prick and intradermal techniques, using benzylpenicilloyl polylysine conjugate and a mixture of minor determinants of penicillin. Specific anti-penicillin IgE antibodies were estimated by the radioallergosorbent test. There was a good correlation between the two methods. The overall frequency of positive tests was 19%. 11 children showed cutaneous reactivity only to the minor determinants mixture. Positive results were found more often in those with accelerated adverse reactions, particularly anaphylaxis, serum sickness, angio-oedema, or urticaria. The validity of penicillin-negative results was confirmed by drug challenge in 56 subjects, only 2 of whom showed a slight skin rash. Of 5 patients with positive tests, inadvertent administration of penicillin produced accelerated urticaria in all. 14 of 42 children with positive tests had lost hypersensitivity to penicillin one year later. In a separate group of 50 children with a history of adverse response to ampicillin, the overall frequency of positive tests was 12%; 38% showed evidence of recent E-B virus infection. It was concluded that penicillin allergy is often overdiagnosed. The diagnosis can be reliably confirmed by skin tests using major and minor determinants of benzylpenicillin and by the radioallergosorbent test; such hypersensitivity is not permanent.

Ampicillin↗

Sendai virus multiplication in the presence of ceruloplasmin and homologous virus envelopes.

Preincubation of Sendai virus with ceruloplasmin induced in chorioallantoic membrane (CAM) fragments the synthesis of a population with decreased infectivity and high haemagglutinating (HA) and neuraminidase (NA) activities, whereas preincubation with solubilized virus envelopes led to the production of a viral population with the same infectivity as the control, but with lower HA and NA activities. Preincubation of the virus with a mixture of ceruloplasmin and solubilized envelopes depressed the overall virus synthesis; the resulting population had a low infectivity and high HA and NA activities. The variation in the HA/NA ratio indicates a modification in the envelope structure.

Animals↗

Effect of ceruloplasmin on AoPR8 influenza virus infection in embryonate eggs and mice.

Inoculation to embryonate hen eggs and mice of AoPR8 influenza virus pre-incubated with ceruloplasmin (10(-7)-10(-6) M) results in a statistically significant decrease in the hemagglutinating titer of the virus, without changes in infectivity. This effect is ascribed to formation of a virus-ceruloplasmin complex, which probably interferes with both virus penetration and release of newly formed virus from the cell.

Animals↗

Effect of ceruloplasmin on Sendai virus multiplication in chorioallantoic membrane fragments.

Three stages can be distinguished in the evolution of HA titer during Sendai virus multiplication in chorioallantoic membrane (CAM) fragments in relation to the age of CAM and conditions of inoculation and maintenance. Ceruloplasmin has an inhibitory effect on virus multiplication, more marked in the case of stationarily maintained CAM fragments and dependent on the relationship between the moment of ceruloplasmin addition and of virus inoculation. Maximum inhibition is achieved by inoculation of Sendai virus (1 Ha u) after 4 1/2-hour preincubation with ceruloplasmin (5 x 10(-7)M). The experimental data plead for the formation of a virus-ceruloplasmin complex able to inhibit both penetration and release of virus synthesized in the cell.

Ceruloplasmin↗

Induction of chemiluminescent emission in polymorphonuclear leucocytes stimulated by Sendai virus.

Sendai virus (SV) stimulates in vitro the chemiluminescent emission (CHL) of human polymorphonuclear leucocytes (LPMN). The kinetics of CHL produced by LPMN depends on the structure of stimulus, the intensity being dependent of the immunological status of the subject. CHL induced by Sendai virus is similar to that given by phorbol-myristate (PMA) as regards the induction of an early maximum. To obtain CHL significant emission, an optimum ratio between LPM concentration and Sendai virus dilution is required. The maximum effect is obtained in a large scale of dilution of Sendai virus ranging from 6,000 to 16,000 uHA.

Cells, Cultured↗

Antiviral activity of some copper complexes of symmetrical triazines.

Copper complexes of hydrazones derived from symmetrical triazines inhibit the multiplication of three different types of viruses (Sendai, HSV and VSV) showing as well a scavenger activity on O2- radicals. The results emphasize the antiviral activity of these complexes which have at the same time a O2- radical scavenger activity.

Antiviral Agents↗

Interaction between ceruloplasmin and Sendai virus envelope components. Note i. Gel-filtration of Tween 20-solubilized envelope components.

Sindai virus was disrupted by treatment with different concentrations of Tween 20 in an alkaline medium and the variations in infectivity, turbidity, hemagglutinin, neuraminidase and hemolytic activities were followed up. Gel-filtration of virus envelope fragments obtained by disruption with 1% Tween 20 demonstrated their heterogeneity as regards shape, size and biological activity. The elution type, the ratio between hemagglutinin and neuraminidase activities and the affinity for red blood cells of the envelope fragments depend on the detergent concentration used for virus disruption and on the presence or absence of detergent in the eluent.

Adsorption↗

Interaction between ceruloplasmin and Sendai virus envelope components. Note ii. Some characteristics of Tween 20-solubilized envelope components isolated by gel-filtration.

Biological activities of Tween 20-solubilized Sendai virus envelope differ according to the structure of the components obtained, which depends on: conditions of virus disruption, presence or absence of detergent during gel-filtration, duration of maintenance, type of fragments contained in the samples, and can be correlated neither with the size of fragments, nor with protein concentration.

Adsorption↗

Interaction between ceruloplasmin and Sendai virus envelope components. Note III. Separation of Sendai virus envelope components by affinity chromatography.

Sendai virus envelopes solubilized by Triton X-100 at an alkaline pH were submitted to affinity chromatography on fetuin-Sepharose 4B. In the absence of Triton three groups of envelope fragments were eluted, while in the presence of detergent only two groups were separated. In both cases, envelope fragment populations eluted at low temperature contained hemagglutinin (HA), neuraminidase (N-ase) and HI-antibody blocking (HIb) activity. The populations eluted at 37 degrees C contained N-ase and HIb activity, but no HA. The populations isolated show various ratios of HA, N-ase and HIb, and have different affinities for the coupled fetuin and formolated RBC. Our data strongly suggest that binding to coupled fetuin takes place via enzymatic centres, while binding to RBC occurs via hemagglutinating centres.

Ceruloplasmin↗

Interaction between ceruloplasmin and Sendai virus envolpe components. Note IV. Effect of ceruloplasmin on the hemagglutinin and neuraminidase activities of Tween 20-solubilized envelope components separated by adsorption--elution on RBC.

Ceruloplasmin inhibits the hemagglutinin (HA) and neuraminidase (N-ase) activities of envelope fragment populations isolated from Sendai virus disrupted by alkali--Tween 20 treatment. The inhibition induced differs according to adsorption--elution characteristics, value and ratio of HA and N-ase activities and sterical configuration of the envelope fragments.

Ceruloplasmin↗

Interaction between cerulopasmin and Sendai virus envelope components. Note V. Serological response in the rabbit to Sendal virus and subviral fractions.

Immunization of rabbits with Sendai virus and subviral fractions induced the appearance in the serum of both hemagglutinin- and neuraminidase-inhibiting antibodies. The study of the correlation between antigen characteristics and the level and kinetics of the antibodies suggests that a single antigenic glycoprotein carries both hemagglutinin and neuraminidase activities. The level of serum antibodies depends both on the size and structure of the antigens and on their organization, and reflects the role of the protein and carbohydrate moieties of the different antigen preparations used.

Animals↗

Interaction between ceruloplasmin and Sendai virus envelope components. Note VI. Effect of ceruloplasmin on the antigenicity of Sendai virus and subviral fractions.

The results obtained by immunization of rabbits with different Sendai virus antigens (whole virus, envelope fragments and partially purified nucleoprotein) previously incubated with homologous ceruloplasmin confirm the hypothesis of a common protein support for both hemagglutinin and neuraminidase activities, demonstrate the participation of ceruloplasmin in the immune mechanism and reveal the role of the carbohydrate moiety of the glycoprotein in immune response. The probable mechanism of interaction between ceruloplasmin and Sendai virus envelope glycoprotein is discussed.

Animals↗