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Biomedical subjects

N Robert

Publications and source records attributed to N Robert.

At least 19 recordsLinked to original sources

[Cataract surgery and implantation in diabetics. Apropos of 92 eyes].

We examined 92 eyes (63 patients) who underwent extracapsular cataract extraction with implantation of a posterior chamber intraocular lens. Visual acuity improved by two lines or more in 65% of cases. Follow-up examination (6 months and 2 years) showed posterior capsule opacification in 30% of cases. Progression of diabetic retinopathy was mild but cystoid macular edema was present in 70% of cases with non proliferative retinopathy. Proliferative retinopathy was treated postoperative by pan retinal photocoagulation. One neovascular glaucoma occurred, secondary to a ruptured capsule.

Aged

Differential expression and distinct structure of 69- and 100-kDa forms of 2-5A synthetase in human cells treated with interferon.

Using specific monoclonal and polyclonal antibodies, the induction, synthesis and subcellular localization of 69- and 100-kDa forms of 2',5'-oligoadenylate (2-5A) synthetase (p69 and p100) were investigated in alpha-interferon-treated human HeLa and Daudi cells. Although both p69 and p100 were induced by interferon, there were significant differences in the interferon dose-response and the kinetics of synthesis of each protein in these cell lines. Both proteins are localized mainly in the cytoplasm. However, immunoenzymatic staining analysis of interferon-treated cells indicated that a proportion of p69 is concentrated around the nuclei and the rest is distributed in a specific pattern in the cytoplasm whereas p100 is found in a diffuse state in the cytoplasm. In accord with its association to cell membranes, p69 is myristilated. The [35S]cysteine and [3H]myristate-labeled p69 preparations were resolved by two-dimensional gel isoelectric focusing with pI values in the pH range of 7.0-8.0 and 7.0-7.5, respectively. These observations suggested the existence of two forms of p69 which might be complexed together as a dimer. In favor with a dimeric form of p69, in gel filtration experiments the peak of p69 was routinely found in fractions corresponding to a molecular mass of 160 kDa whereas p100 was recovered as a monomer. Taken together, these results indicate that p69 and p100 have distinct characteristics and that their expression is a specific property of each cell type in response to interferon.

2',5'-Oligoadenylate Synthetase

The binding of double-stranded RNA and adenovirus VAI RNA to the interferon-induced protein kinase.

The protein kinase from human cells dependent on double-stranded (ds) RNA is a 68-kDa protein (p68 kinase), the level of which is enhanced significantly in cells treated with interferon. When activated by low concentrations of dsRNA, the p68 kinase becomes phosphorylated and thereby catalyzes the phosphorylation of the protein-synthesis initiation factor, eIF2. Here, we have purified the p68 kinase to homogeneity using a specific monoclonal antibody to investigate its capacity to bind dsRNA, poly(I).poly(C). Our study suggest that p68 kinase has high- and low-affinity binding sites: the high-affinity binding site is responsible for the activation and the low-affinity binding site for the inhibition of kinase activity. This is in accord with the fact that autophosphorylation of p68 kinase occurs at low concentrations of dsRNA whereas high concentrations of dsRNA inhibit its autophosphorylation. We have also investigated the binding of adenoviral VAI RNA to the purified p68 kinase and have found that the affinity of this binding is lower than that of poly(I).poly(C). We show that VAI RNA can activate or inhibit autophosphorylation of p68 kinase in a dose-dependent manner, i.e. activation at less than or equal to 1 microgram/ml or inhibition at greater than 1 microgram/ml of VAI RNA. In spite of its lower affinity of binding, VAI RNA cannot be displaced by poly(I).poly(C) or reovirus dsRNA. These data confirm our previous results to illustrate that VAI RNA can bind p68 kinase and cause its inactivation irreversably.

Adenoviruses, Human

Interferon- and sarcolectin-dependent cellular regulatory interactions.

Interferons, via specific membrane-bound receptors, induce various cellular functions of which antiviral protection is the most extensively studied. We have previously reported the existence of interferon antagonists (referred to as sarcolectins) in various tissue extracts from placental blood, cartilage, brain, muscle, or from sarcomas. These sarcolectins have been fully characterized and purified to homogeneity. In interferon-treated cells, they restore virus sensitivity 4-6 h after the establishment of antiviral protection. In the present study we investigate the effect of sarcolectins on the steady state levels of two double-stranded RNA dependent enzymes, 2-5A (p chi (A2'p)nA) synthetase and protein kinase. Several authors have previously emphasized the role of these enzymes in the mechanism of interferon's antiviral action. Interferon promotes a 4-8 fold increase in protein kinase and 2-5A synthetase in cells. Addition of sarcolectin 5 h after interferon results in a dramatic reduction in the steady state levels of both these enzymes, as shown by their decreased activity and yield observed in Western blot assays. The degradation of the antiviral response in sarcolectin-treated cells might therefore be at least partially attributed to a reduced synthesis of protein kinase and 2-5A synthetase. Since there are no direct interactions between sarcolectins and interferon or its receptors, it can be postulated that sarcolectins exert their effect through these interferon-dependent proteins. We postulate that the opposing biological effects of interferon and sarcolectins strike a balance which may, however, be modified in one direction or the other, depending on their respective concentrations.

2',5'-Oligoadenylate Synthetase

Defective estrogen receptors in human mammary cancers: their significance in defining hormone dependence.

Neither estrogen dependence nor clinical response to hormone therapy of the tumor is guaranteed by the mere presence of receptors for estrogens (ERs) or progesterones (PRs). Immunohistochemical staining of ER with polyclonal anti-ER antibodies after in vitro transformation has enabled the identification of two types of defective ER among human breast cancers: those that are unable to bind to the nucleus in a hormone-filled state and those that bind to the nucleus as naked ER. Preliminary clinical correlation studies demonstrate that a subclassification of ER(+) tumors based on functional abnormalities of ER may predict refractoriness to hormone therapy.

Antibodies, Monoclonal

Characterization of 69- and 100-kDa forms of 2-5A-synthetase from interferon-treated human cells.

The existence of distinct 69- and 100-kDa forms of 2-5A-synthetase in addition to the smaller (40 and 46 kDa) forms has recently been established. Using specific monoclonal antibodies we investigated the induction, synthesis, and activity of 69- and 100-kDa 2',5'-oligoadenylate (2-5A) synthetases in interferon-treated human Daudi cells. Although induction of these synthetases is detectable in cells treated with as little as 1-5 units/ml of human alpha-interferon, higher concentrations are required for maximum synthesis of the 100 kDa than the 69-kDa protein. At 5 units/ml of interferon, enhanced synthesis of both proteins is detectable at 4 h with maximum synthesis occurring between 8 to 12 and 12 to 16 h for 69- and 100-kDa 2-5A-synthetases, respectively. At 24 h after addition of interferon, synthesis of these synthetases declines due to a decrease of active interferon in the culture medium. The synthesis of both synthetases is blocked by actinomycin D, and the half-life of these proteins is estimated to be 8 h. The activities of immunoaffinity purified 69- and 100-kDa synthetases are dependent on double-stranded (ds)RNA but show different requirements for optimum concentration of dsRNA and pH of the reaction. The apparent Km of 69- and 100-kDa synthetases for ATP is 1.7 X 10(-3) M and 3.6 X 10(-3) M, respectively. At optimum conditions for the activity of these enzymes, the pattern of 2',5'-linked oligoadenylates synthesized are different, the 69-kDa protein synthesizing higher oligomers than the 100-kDa species. Taken together, these results indicate that the 69- and 100-kDa 2-5A-synthetases are distinct proteins each with specific characteristics of induction and enzymatic activity.

2',5'-Oligoadenylate Synthetase

Activation of the major late promoter in adenovirus transformed cells by 5-azacytidine.

The adenovirus major late promoter (MLP) is normally not active in transformed cells. We investigated if it could be activated with 5-azacytidine. Three days of treatment with 10 microM 5-azacytidine induced transient activation of the MLP as shown by hybridization with an L1 r-strand-specific probe. The po/III-transcribed VA-RNAs were not activated. L1 activation was not accompanied by detectable changes in methylation of HpaII sites at the promoter or in the body of the transcript. Stably activated cell clones could be obtained at 20% frequency after long-term drug treatment.

Adenoviridae

Identification of 69-kd and 100-kd forms of 2-5A synthetase in interferon-treated human cells by specific monoclonal antibodies.

Recently, the existence of 40-kd and 46-kd 2-5A synthetases in interferon-treated cells has been confirmed by cloning and characterization of cDNA corresponding to these small size enzymes. By the use of specific monoclonal antibodies, we describe here two forms of high mol. wt 2-5A synthetases of 69 and 100 kd in human cells. The monoclonal antibodies immunoprecipitate either a 69- or a 100-kd 2-5A synthetase. These purified 2-5A synthetases in immune complex preparations are active, i.e. addition of poly(I).poly(C) and ATP results in the synthesis of 2-5A. Both 2-5A synthetases are composed of several subspecies with similar isoelectric points in the range of 7-8 but have different subcellular localizations: 100-kd synthetase is recovered from the microsomal pellet whereas 69-kd synthetase is found to be associated with cell membranes as well as with the microsomal pellet. Different types of interferon-treated human cells express both or either forms of these enzymes. The 69- and 100-kd 2-5A synthetases were also identified by electrophoretic transfer immunoblot analysis using rabbit polyclonal antibodies against a synthetic peptide common on both 46- and 40-kd 2-5A synthetases. These results indicate that small and large size isozymes share a common peptide sequence.

2',5'-Oligoadenylate Synthetase

Rapid decrease in the levels of the double-stranded RNA-dependent protein kinase during virus infections.

The double-stranded RNA-dependent protein kinase from human cells is a 68,000 molecular weight protein (p68 kinase), the level of which is enhanced significantly in cells treated with interferon. With a monoclonal antibody specific for p68 kinase, here we show the phosphorylation and steady-state levels of p68 kinase during virus infection. The p68 kinase is phosphorylated in interferon-treated cells during infection with encephalomyocarditis virus (EMCV), vesicular stomatitis virus (VSV), and vaccinia virus, thus indicating activation of p68 kinase during these virus infections, an essential step required for autophosphorylation of p68 kinase. However, in spite of this activation, the level of p68 kinase is rapidly decreased in virus-infected cells. The half-life of p68 kinase in uninfected cells is 6 to 7 hr, whereas in EMCV-infected cells it is 2 to 3 hr. This decrease in the level of p68 kinase is dependent on the multiplicity of virus infection and it seems to be specific since other cellular proteins as well as the activity of 2'-5'-oligoadenylate synthetase are not modified. Decreased levels of p68 kinase are also observed in cells infected with VSV and vaccinia virus. In the absence of virus infection, decreased levels of p68 kinase occur in cells following incubation with poly(I).poly(C).

2',5'-Oligoadenylate Synthetase

Study of anti-Fya in five black Fy(a-b-) patients.

Fya antibodies were detected in 5 Fy(a-b-) black patients during a 5-year period. The Duffy phenotype was confirmed using anti-Fya, anti-Fyb, and anti-Fy3 by an adsorption-elution technique. These 5 patients had sickle cell disease and had received multiple blood transfusions. The antibodies were all found during the investigation of a hemolytic transfusion reaction or failure to achieve the desired red cell increments after transfusion.

Adult

[Hypertensive retinopathy and papilledema. Apropos of a case of glycyrrhizin poisoning].

We present a case report of a patient suffering of severe hypertension and grade IV hypertensive retinopathy according to the Keith-Wagener classification. Simultaneously hypertensive encephalopathy was present confirming the poor prognosis of discoedema occurring in the course of hypertension when left untreated. Hypertension was related to chronic poisoning with glycyrrhiza, and its hyperaldosteronism like effect. Pathogenesis of discoedema in malignant hypertension is discussed.

Adult

Enhanced level of double-stranded RNA-dependent protein kinase in peripheral blood mononuclear cells of patients with viral infections.

The protein kinase activity dependent on double-stranded RNA was assayed in extracts of peripheral blood mononuclear (PBM) cells from healthy volunteers and in patients with different types of virus infections. The protein kinase was assayed after one-step purification on an immunoaffinity column containing monoclonal antibody against the 68,000 Mr protein, a subunit of the protein kinase. In healthy individuals, the activity of the protein kinase remains constant. In contrast, the activity of the protein kinase is enhanced significantly in patients with viral infections and is decreased during the course of the disease in parallel with clinical ameliorations and reversal of clinical symptoms. There is a strong correlation between the enhanced levels of the protein kinase activity and another interferon-mediated enzyme, 2-5A synthetase. Both of these enzymes, therefore, could be used as markers to evaluate the state of the disease and recovery. In the different populations of lymphocytes, most of the protein kinase activity was found to be present in T and B lymphocytes, T lymphocytes showing a higher activity than B lymphocytes.

2',5'-Oligoadenylate Synthetase

Continuous production of interferon in normal mice: effect of anti-interferon globulin, sex, age, strain and environment on the levels of 2-5A synthetase and p67K kinase.

Two interferon-mediated enzymes, a 2-5A synthetase and a kinase that phosphorylates a 67 000 mol. wt. (p67K) protein were found at variable levels in different organs of mice. Among the different strains of mice included in this study, germ-free mice had the lowest levels of these enzymes. The levels of 2-5A synthetase and p67K kinase were enhanced significantly in all mice following treatment with mouse (alpha + beta) interferon. Here, we show that the presence of 2-5A synthetase and p67K kinase in different organs of normal mice (untreated) was due, at least in part, to a constant production of interferon under different physiological conditions. Accordingly, injection of normal mice with anti-mouse interferon (alpha + beta) globulin led to a significant decrease in the level of 2-5A synthetase and p67K kinase. In conventional mice (C3H/He), the level of both of these enzymes was higher in female than in male animals and was decreased with age or when such animals were reared isolated in a pathogen-free protected unit. The levels of 2-5A synthetase and p67K kinase were also decreased in normal mice following injection with a powerful antibiotic against a very wide spectrum of Gram-positive and Gram-negative bacteria. These results suggest that the production of interferon was induced continuously in normal mice. Such induction was mediated by both internal and external agents.

2',5'-Oligoadenylate Synthetase

Use of an anti-human leukocyte interferon monoclonal antibody for the purification and radioimmunoassay of human alpha interferon.

Mouse monoclonal antibody directed against human leukocyte alpha interferon (IFN-alpha) was coupled to Sepharose and used as an immunoadsorbent to purify human IFN-alpha. Leukocyte and lymphoblastoid (Namalva) IFNs were retained by the immunoadsorbent with a specificity of 80 to 100% and 40 to 60%, respectively. Human IFN-beta or -gamma and mouse IFN were not retained. The purified IFN-alpha retained its antiviral and anticellular properties as well as its ability to induce the 2-5A synthetase in human cells with a specific activity similar to that of the crude IFN. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis of radioactively labeled IFN showed that it consisted of several proteins in the molecular weight range of 17,000 to 27,000. 125I-labeled IFN-alpha with a high specific activity (2,000 Ci/mmol) was used in a radioimmunoassay for the titration of IFN-alpha.

Antibodies, Monoclonal