[Prolonged febrile syndrome caused by pelvic abscess in a patient with systemic lupus erythematosus].
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Biomedical subjects
Publications and source records attributed to M A Paz.
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Acid-treatment facilitates PQQ detection by electron ionization mass spectroscopy with a molecular ion at M/e 330 and a base ion formed by triple decarboxylation at M/e 198. Other ions found probably arise through acid-catalyzed tautomeric lactonization of PQQ to PQQ-lactone (PQQL) with subsequent oxidation of PQQL and reduction of PQQ. We propose that a carboxyl group, presumably the 9-carboxyl, attacks a double bond in PQQ, reversibly converting the 4,5-orthoquinone into an 4,5-enediol and forming an isomeric lactone, PQQL, of 330 daltons. The masking of carbonyls may explain the low reactivity of PQQ with carbonyl reagents in acid. Acid-promoted tautomeric lactonization with carbonyl-masking is known to occur with fluoresceins, phenolphthalein and other compounds, but has not been recognized before with PQQ. Acid-treated PQQ demonstrates molecular and other ions derived from reduced PQQ (PQQ(2H] or its lactone at M/e 332 with a base ion at M/e 200. There is compelling evidence for a dehydrogenated lactone, PQQ(-2H)L), at M/e 328 with a base ion at M/e 196. We suggest that PQQ, in tautomeric equilibrium with PQQL, oxidizes PQQL to PQQ(-2H)L (328 daltons), with its concurrent reduction to PQQ(2H) (332 daltons). With acidified D2O, PQQ shows deuterated products with ions at M/e values consistent with lactonization and oxidation-reduction. An analytically useful quinoxaline adduct, formed from PQQ and 2,3-diaminonaphthalene (PQQ-DAN) of 452 daltons, also undergoes acid-tautomerization-lactonization and oxidation-reduction similar to PQQ showing molecular ions at M/e 450, 452 and 454 and decarboxylation-derived strong (base) ions at M/e 318, 320 and 322.(ABSTRACT TRUNCATED AT 250 WORDS)
Reaction of an alpha-amino acid (alpha-AA) with 1,1-diphenylborinic acid (DPBA) leads to the formation of a kinetically stable adduct at pH 2-5 in which both the alpha-amino and the alpha-carboxyl groups are bound to boron forming a cyclic mixed anhydride termed a boroxazolidone. In this adduct, the greater than N:B bond is coordinate, involving the free electron pair of nitrogen, thereby satisfying the octet rule for the second electron shell of boron (Group IIIA). Consequently, the alpha-amino function of the boroxazolidone can be primary, secondary, or tertiary, as demonstrated by boroxazolidone formation with glycine, N-methylglycine, and N,N-dimethylglycine. On reaction with DPBA, the alpha-AA moiety of N-terminal gamma-glutamyl peptides is also derivatized as demonstrated by the formation of a glutathione boroxazolidone. The 1,1-diphenylboroxazolidone adducts of alpha-AA may be separated by reversed-phase (RP)-HPLC (AA-DPBA/RP-HPLC) enabling the derivatization procedure to be used as a precolumn reaction for alpha-AA analysis. Under the conditions we describe here, DPBA is not stably reactive with the epsilon-amino group of lysine. Furthermore, it does not complex with amide bonds of the peptide backbone or to any side chains of the common amino acids. Reaction of an alpha-AA mixture with DPBA, followed by RP-HPLC (AA-DPBA/RP-HPLC) is then a simple method by which to analyze alpha-AA in a mixture with peptides and amines. Precolumn reaction with DPBA may be used to separate peptides from alpha-AA and from those peptides which contain an alpha-AA moiety. Unreacted peptides are bound only weakly to the HPLC column and thus are separated from reacted alpha-amino acids which are retained as 1,1-diphenylboroxazolidones until their selective elution. This method is particularly suited for the analysis of alpha-amino acids that are derived from post-translational modification of protein side chains.
Highly malignant non-Hodgkin lymphomas (HM-NHL) may sometimes develop clinical features simulating an epithelial carcinoma with metastatic dissemination. Conventional histopathological study may be insufficient to differentiate between both conditions. Two patients with HM-NHL are reported with a rapid general deterioration; one of them had osteolysis and hypercalcemia. In both cases a diffuse bone marrow infiltration by large sized cells with blastic appearance was found. The initial suspected diagnosis was occult epithelial neoplasia with metastatic dissemination. The morphological study with optic microscopy and the ultrastructural analysis did not establish the origin of these cells. The definitive diagnosis was obtained by immunohistochemical techniques. In both cases, the cells were positive for the CD 45 (common leukocyte antigen) monoclonal antibody (MoAb), and for several MoAbs of lymphoid B differentiation. In one of them, the B lymphoid lineage was confirmed by monoclonal reordering of the gene that synthetises the immunoglobulin heavy chain.
The recently discovered redox coenzyme, PQQ (methoxatin), is widely distributed. Quantitation of protein-bound PQQ has been difficult, but unique redox cycling reactions, which reflect its striking biological properties, reveal trace amounts. PQQ is a potential target for drugs.
The newly discovered coenzyme PQQ can now be measured at picomole levels with redox cycling methods developed in our laboratory. PQQ-peptides have been obtained from digests of the copper quinoenzymes, diamine oxidase, lysyl oxidase and dopamine-beta-hydroxylase. PQQ is present in egg yolk and milk, suggesting its immediate availability for developing embryos and newborn animals. We suggest that PQQ, when exposed in traumatized, ischemic, inflammed or pathological tissues, may catalyze the formation of large amounts of superoxide and should be considered as a source of oxidative stress when planning pharmacotherapeutic intervention. PQQ and quinoproteins play a role in the redox metabolism and structural integrity of cells and tissues.
Porcine kidney diamine oxidase, a PQQ-enzyme, can be directly measured by formazan production with putrescine and nitroblue tetrazolium. This cyclic reaction in air is unaffected by superoxide dimutase, suggesting a two electron transfer between substrate-reduced PQQ-locus and nitroblue tetrazolium, without intermediate formation of superoxide. With albumin-bound PQQ and detergent-exposed PQQ-loci, glycine can be oxidized by PQQ and electrons repetitively transferred through PQQ-sites to nitroblue tetrazolium, the rate of formazan production detecting picomoles of exposed PQQ-locus. Exposed PQQ-loci are also reducible with NaCNBH3. Nitroblue tetrazolium, reoxidizes the reduced PQQ-locus with formazan production. These experiments suggest that the PQQ-locus of quinoproteins contains a [ketone-ketoimine in equilibrium with ketoamine] redox center.
Utilizing a recently developed method (Boradeption) for transferring water-insoluble hydroxyorganoborane compounds into the cells, we observed inhibition of protein synthesis by three of these compounds and inhibition of secretion of plasma proteins by four of them in human hepatoma HepG2 cells. These effects were specific in that the cell viability was not affected and an increase in protein catabolism was not observed. Three compounds caused a compound-specific alterations in the electrophoretic mobility of secreted glycoproteins due to underlying changes in the N-linked carbohydrate moieties. Results presented suggest a potential new source of cellular probes.
Hypusine-containing protein identified as eukaryote initiation-translation factor 4D was labeled with [14C]spermidine in logarithmically growing Chinese hamster ovary cells. Radioautography of the cellular proteins separated by polyacrylamide gel electrophoresis showed the label in a single protein of 18000 Mr. Time course analysis showed that this protein remained undegraded for up to 72 hours after its synthesis. Radioactivity present in the amino acid hypusine, isolated after acid hydrolysis, remained constant during the same period of time. These results indicate that the hypusine-containing protein has a long half-life.
Logarithmically growing Chinese hamster ovary cells, cultured in the presence of [1,4-14C]putrescine, synthesize a protein(s) containing the unusual amino acid hypusine [N epsilon-(4-amino-2-hydroxybutyl)lysine]. This protein was separated and identified by two-dimensional gel electrophoresis and fluorography. The labeled hypusine isolated from an acid hydrolysate of the cell protein by ion exchange chromatography was identified by oxidative degradation and analyses of the products. Hydralazine, one of the most frequently prescribed drugs for the treatment of moderate to severe hypertension, added to the culture, resulted in the accumulation of a protein(s) containing the precursor amino acid deoxyhypusine [N epsilon-(4-aminobutyl)lysine]. Demonstration of this intermediate and its subsequent conversion to hypusine suggests that the synthesis occurs in several steps, one of these involving a hydroxylation reaction which can be inhibited by hydralazine.
Hypusine (N(-)-(4-amino-2-hydroxybutyl) lysine), a spermidine-dependent post-translational protein modification, is synthesized by various mammalian cells in culture. Experiments described in this paper demonstrated a relationship between rates of cellular growth and the synthesis of hypusine. Cells that divide at fast rates have a high rate of hypusine synthesis. In kinetic experiments, a positive relationship is evident between the rates of protein, DNA and hypusine synthesis. Cells seeded at high density, growing non-exponentially, synthesized less hypusine than logarithmically growing cells seeded at low density. Slowing the growth rate of cells by modification of the external milieu also results in a decreased rate of hypusine synthesis. These results provide additional evidence of the association of hypusine with cell proliferation in cultured cell lines and suggest a possible role for this unusual post-translational modification in the complex macromolecular events leading to cellular growth.
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High affinity cell surface receptors for low density lipoproteins (LDL) are inducible in cultured human lung fibroblasts by the removal of lipoproteins from the cell culture medium. The binding, uptake, and degradation of 125I-LDL by fibroblasts decrease with increasing number of population doublings. The affinity of LDL receptor binding, however, remained unchanged at different population doublings levels. Hence, the difference in LDL binding activity in the aging fibroblasts can be attributed to a reduction in the number of receptor sites on the cell membrane. Cellular uptake of [4-14C]cholesterol and 2-deoxy-D-[1-14C]glucose mediated through mechanisms independent of the LDL receptor pathway revealed no significant difference in early and late passage fibroblasts. This suggests that the alteration in the LDL receptor binding in serially passaged fibroblasts is an "age-related" phenomenon. The late population doubling fibroblasts require more LDL in the culture medium for feedback inhibition of LDL receptor synthesis. Thus, aging fibroblasts are both progressively less inducible and less suppressible in the regulation of their cell membrane LDL receptors. Similar results were also obtained with respect to the regulation of DL-3-hydroxy-3-methyl-glutaryl coenzyme A reductase in the aging fibroblasts in culture; the enzyme has become less inducible and less supressible as the fibroblasts approach the limit of their in vitro lifespan. These age-related alterations in the cellular metabolism of LDL and cholesterol might contribute to our understanding of the increased risk of athlerosclerosis in our aging population.
A new process has been developed which is called "Boradeption" to signify boronic acid--dependent phase transfer of water-insoluble agents. Highly fluorescent boronic acid dervatives, FluoroBoras, are solubilized with a physiologically compatible carrier buffer containing a receptor group for boronate adduct formation. The system can be used to stain living cells. In another variation of the Boradeption concept, an insoluble reporter molecule containing a boronate receptor is solubilized with a carrier buffer containing a boronic acid functional group. The boronate-receptor complexes, which are in dynamic equilibrium, can be designed as vital stains and reagents for a variety of biological and medical applications.
Human diploid fibroblasts of embryonic origin which display the limited lifespan phenomenon, respond to purine base deprivation with a large accumulation of phosphoribosylpyrophosphate when studied at early population doubling levels. This suggests that the purine salvage enzymes are the main consumers of phosphoribosylpyrophosphate in such cells. There is a strong positive correlation between the rate of de novo purine synthesis and the phosphoribosylpyrophosphate content, consistent with its role in the first and rate-limiting reaction of de novo purine synthesis. With increasing population doublings, the cells become less responsive to purine base deprivation; the phosphoribosylpyrophosphate does not increase significantly and a lower rate of de novo purine synthesis is observed. As the rate of cell replication decreases with serial passages, it becomes apparent that such cells appropriately adjust the concentration of phosphoribosylpyrophosphate, thereby controlling the rate of purine synthesis according to their needs for cellular growth.
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Human diploid fibroblasts serially cultured in vitro show a progressive decline in their proliferative capacity. Much before the cells cease to divide, changes in certain phenotypic parameters can also be detected with passage level. A progressive decline in the ratio of two enzyme activities in the purine salvage pathway, one an X-linked enzyme, hypoxanthine-guanine phosphoribosyltransferase (HGPRT) and the other a biochemically related autosomal-linked enzyme, adenine phosphoribosyltransferase (APRT) becomes apparent with increasing population doublings. The more extensive relative decline in HGPRT activity with passage may be explained on gene dosage effects subsequent to the random inactivation of one X-chromosome in the somatic cells of mammalian females; however, other interpretations can be considered. Since the enzyme activity ratio of HGPRT/APRT decreases linearly with population doubling, it could be useful for the evaluation of the biological "age" of serially passaged cultures. Studies of X-linked processes in human diploid cells and its variations during the life-span in culture may contribute to our understanding of some of the mechanisms of "senescence/change" and of the etiology of certain maturity onset disorders.