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Biomedical subjects

T M Harris

Publications and source records attributed to T M Harris.

At least 91 records · Page 5Linked to original sources

Carcinogen-nucleic acid interactions: equilibrium binding studies of aflatoxins B1 and B2 with DNA and the oligodeoxynucleotide d(ATGCAT)2.

Equilibrium binding is believed to play an important role in directing the subsequent covalent attachment of many carcinogens to DNA. We have utilized UV spectroscopy to examine the non-covalent interactions of aflatoxin B1 and B2 with calf thymus DNA, poly(dAdT):poly(dAdT), and poly(dGdC):poly(dGdC), and have utilized NMR spectroscopy to examine non-covalent interactions of aflatoxin B2 with the oligodeoxynucleotide d(ATGCAT)2. UV-VIS binding isotherms suggest a greater binding affinity for calf thymus DNA and poly(dAdT):poly(dAdT) than for poly(dGdC):poly(dGdC). Scatchard analysis of aflatoxin B1 binding to calf thymus DNA in 0.1 M NaCl buffer indicates that binding of the carcinogen at levels of bound aflatoxin less than 1 carcinogen per 200 base pairs occurs with positive cooperativity. The cooperative binding effect is dependent on the ionic strength of the medium; when the NaCl concentration is reduced to 0.01 M, positive cooperativity is observed at carcinogen levels less than 1 carcinogen per 500 base pairs. The Scatchard data may be fit using a "two-site" binding model [L.S. Rosenberg, M.J. Carvlin, and T.R. Krugh, Biochemistry 25, 1002-1008 (1986)]. This model assumes two independent sets of binding sites on the DNA lattice, one a high affinity site which binds the carcinogen with positive cooperativity, the second consisting of lower affinity binding sites to which non-specific binding occurs. NMR analysis of aflatoxin B2 binding to d(ATGCAT)2 indicates that the aflatoxin B2/oligodeoxynucleotide complex is in fast exchange on the NMR time scale. Upfield chemical shifts of 0.1-0.5 ppm are observed for the aflatoxin B2 4-OCH3, H5, and H6a protons. Much smaller chemical shift changes (less than or equal to 0.06 ppm) are observed for the oligodeoxynucleotide protons. The greatest effect for the oligodeoxynucleotide protons is observed for the adenine H2 protons, located in the minor groove. Nonselective T1 experiments demonstrate a 15-25% decrease in the relaxation time for the adenine H2 protons when aflatoxin B2 is added to the solution. This result suggests that aflatoxin B2 protons in the bound state may be in close proximity to these protons, providing a source of dipolar relaxation. Further experiments are in progress to probe the nature of the aflatoxin B1 and B2 complexes with polymeric DNA and oligodeoxynucleotides, and to establish the relationship between the non-covalent DNA-carcinogen complexes observed in these experiments, and covalent aflatoxin B1-guanine N7 DNA adducts.

Aflatoxin B1↗

On non-cyclooxygenase prostaglandin synthesis in the sea whip coral, Plexaura homomalla: an 8(R)-lipoxygenase pathway leads to formation of an alpha-ketol and a Racemic prostanoid.

Plexaura homomalla is a rich natural source of prostaglandins and recent evidence suggest the prostaglandin biosynthesis could occur through a lipoxygenase pathway. We have investigated the metabolism of arachidonic acid in homogenates and acetone powders of the fresh frozen coral. The biosynthesis of natural prostaglandins was not detected. However, we find a prominent 8(R)-lipoxygenase pathway leading to an alpha-ketol, characterized by high pressure liquid chromatography, gas chromatography-mass spectrometry, and NMR as 8-hydroxy, 9-keto-eicosa-5Z, 11Z, 14Z-trienoic acid, and a prostaglandin A-like cyclopentenone identified as 9-oxo-[8, 12-cis]-prosta-5Z, 10, 14Z-trienoic acid. These reactions appear analogous to the transformation of linolenic acid hydroperoxide by "isomerase" and "cyclase" of corn and flaxseed. From analysis of the absolute configurations of the coral products, and from additional stable isotope labeling experiments in H218O and D2O, we deduce that both compounds arise via conversion of 8(R)-HPETE to an 8(R), 9-allene oxide, 8R,9-oxido-eicosa-5Z, 9, 11Z, 14Z-tetraenoic acid. This unstable intermediate undergoes hydrolysis to form the alpha-ketol or cyclization to give the cyclopentenone. Significantly, we find that the prostaglandin-like product is a racemic mixture of cis side chain enantiomers, pointing to its nonenzymatic origin from the allene oxide. The alpha-ketol is formed with partial racemization and inversion of configuration, also compatible with formation in a nonenzymatic reaction. We conclude that the isomerase and cyclase reactions may merely reflect nonenzymatic breakdown of the enzymatically formed allene oxide. The origin of the endogenous (chiral) prostaglandins of the coral may involve an allene oxide intermediate, although the potential for formation of racemic products presents an interesting dilemma regarding its relationship to the natural pathway of biosynthesis.

Animals↗

Analysis of a specific oxygenation reaction of soybean lipoxygenase-1 with fatty acids esterified in phospholipids.

Soybean lipoxygenase was reacted with phosphatidylcholine (at pH 9, with 10 mM deoxycholate), and the oxygenation products were analyzed by high-pressure liquid chromatography, UV, gas chromatography-mass spectrometry (GC-MS), and NMR. The structures of the intact glycerolipid products were established by GC-MS of diglycerides recovered by phospholipase C hydrolysis and by proton NMR of the intact phosphatidylcholine. These analyses, together with analyses of the transesterified fatty acids, indicated that arachidonyl and linoleoyl moieties in the phosphatidylcholine were converted exclusively to the 15(S)-hydroperoxy-5(Z),8(Z),11(Z),13(E)-eicosatetraenoate and 13(S)-hydroperoxy-9(Z),11(E)-octadecadienoate analogues, respectively. Control experiments proved that the intact phospholipid (and not hydrolyzed/reesterified fatty acid) was the true substrate of the oxygenation reaction. Phosphatidylethanolamine and phosphatidylinositol lipids were also substrates for specific oxygenation by the soybean lipoxygenase. The results provide concrete evidence that fatty acids esterified in phospholipid can be subject to highly specific oxygenation by a lipoxygenase enzyme.

Chromatography, High Pressure Liquid↗

Reaction of the model thiol 2-mercaptoethanol and glutathione with methylvinylmaleimide, a Michael acceptor with extended conjugation.

Many alpha,beta-unsaturated compounds are sufficiently reactive to condense with nucleophiles under physiological conditions and are potentially deleterious to cellular processes. These compounds react with thiols by nucleophilic attack to give 1,4 addition products. We have examined the products formed from the reaction of the model thiols HSCH2CH2OH and glutathione with methylvinylmaleimide, a Michael acceptor with extended conjugation. Glutathione produced exclusively a 1,6 addition product with methylvinylmaleimide. HSCH2CH2OH also formed a 1,6 nucleophilic addition product, as well as a disubstituted product resulting from apparent further 1,4 addition to the 1,6 addition product. Two other novel products which resulted from addition to the maleimide ring and addition at the vinyl carbon proximal to the maleimide ring were observed.

Glutathione↗

Lysophosphatidylcholines containing polyunsaturated fatty acids were found as Na+, K+-ATPase inhibitors in acutely volume-expanded hog.

Na+, K+-ATPase inhibitors possessing inhibitory activities against the specific binding of ouabain to Na+, K+-ATPase and 86Rb uptake into hog erythrocytes have been purified from the plasma of acutely saline-infused hog. The purifications were performed by a combination of Amberlite XAD-2 adsorption chromatography and four steps of high-performance liquid chromatography with four different types of columns. Fast atom bombardment (FAB) mass and proton NMR spectrometric studies identified the purified substances as gamma-arachidoyl- [LPCA(gamma), 34%], beta-arachidoyl- [LPCA(beta), 4%], gamma-linoleoyl- (LPCL, 33%), and gamma-oleoyl- (LPCO, 25%) lysophosphatidylcholine, expressed in molar ratio in the plasma. Small amounts of gamma-docosapentaenoyl-, gamma-eicosatrienoyl-, and gamma-palmitoyllysophosphatidylcholine were also detected by both FAB mass and 1H NMR spectrometric studies. Only gamma-acyl-LPC's showed inhibitory activities on Na+,K+-ATPase and ouabain-binding activities. These LPC's were effective at 100 microM levels in attaining 50% inhibition of the enzyme activity. The inhibition of Na+,K+-ATPase activity due to these compounds was always more sensitive than that of both ouabain-binding and 86Rb uptake activities. The ouabain-displacing activity in plasma due to these compounds increased with time during saline infusion. The maximal plasma level was approximately 10 times higher than that in the preinfusion plasma sample. Although these results suggest the gamma-acyl-LPC's with long-chain polyunsaturated fatty acids are not simple competitive inhibitors to Na+, K+ -ATPase, these compounds could be implicated in the pathogenesis of the circulation abnormality through the modulation of membrane enzyme.

Animals↗

Collection of leukocytes, fibroblasts, and collagen within an implantable reservoir tube during tissue repair.

An implantable chamber consisting of a small reservoir and a perforated segment of silicone tubing has been developed for the collection of leukocytes, fibroblasts, and collagen to analyze inflammatory components and fibroplasia during tissue repair. Using aseptic techniques, these sterile chambers were placed into subcutaneous pockets on the backs of Sprague-Dawley rats with cells obtained in daily aspirates for 14 d. Differential cell counts were made by using aliquots from the wound fluid. The aspirated cells represented the characteristic, sequential influx of neutrophils, inflammatory macrophages, lymphocytes, activated macrophages, and fibroblasts documented in other models of tissue repair. On d 14, the connective tissue within the lumen of the silicone tube was removed and analyzed for collagen synthesis by measuring 3H-proline incorporation into collagenase-sensitive protein. This new device for studying wound healing provides a convenient means to harvest cells, fluid, and tissue for cellular, humoral, and biochemical analyses of tissue repair.

Animals↗

S-[2-(N7-guanyl)ethyl]glutathione, the major DNA adduct formed from 1,2-dibromoethane.

The reaction of 1,2-dibromoethane and glutathione with DNA in the presence of glutathione S-transferase results in the formation of a single major DNA adduct, which can be released by thermal hydrolysis at neutral pH and separated by octadecylsilyl and propylamino high-performance liquid chromatography. The same DNA adduct is the only major one formed in livers of rats treated with 1,2-dibromo[1,2-14C]ethane. The DNA adduct was identified as S-[2-(N7-guanyl)ethyl]glutathione: (1) The chromatographic behavior was altered by treatment with gamma-glutamyl transpeptidase or Streptomyces griseus protease. (2) The molecular ions observed in positive and negative mode fast atom bombardment mass spectrometry were those expected for the structure when either glycerol or a mixture of dithiothreitol and dithioerythritol was used as the bombardment matrix. (3) The two-dimensional 1H NMR correlated spectroscopy spectrum of the DNA adduct was compared to the spectra of glutathione, oxidized glutathione, and N7-methylguanine and found to be consistent with the assigned structure. No evidence for in vitro or in vivo opening of the guanyl imidazole ring was observed under these conditions. The structure of the adduct supports a pathway involving enzyme-catalyzed conjugation of 1,2-dibromoethane with glutathione, non-enzymatic dehydrohalogenation of the resulting half-mustard to form a cyclic episulfonium ion, and attack of the N7 nitrogen of DNA guanine on the episulfonium ion to generate this major DNA adduct, which may be related to the carcinogenicity of this chemical.

Animals↗

A short-chain aldehyde is a major lipoxygenase product in arachidonic acid-stimulated porcine leukocytes.

Porcine leukocytes convert exogenous arachidonic acid to a complex array of products derived via the 5-, 12-, and 15-lipoxygenase pathways of metabolism. The major monohydroxylated metabolite following addition of 100 microM arachidonic acid is 12-hydroxyeicosatetraenoic acid. Of the more polar compounds on reverse-phase high pressure liquid chromatography, the most prominent is a previously uncharacterized arachidonate product which chromatographs near to the omega-oxidized metabolites of leukotriene B4. The structure of this new product was examined by high pressure liquid chromatography, UV, NMR, and also by gas chromatography-mass spectrometry of several derivatives; it was identified as 12-oxododeca-5,8,10-(Z,Z,E)-trienoic acid. It is proposed that this C-12 trienal acid is formed from 12-hydroperoxyeicosatetraenoic acid by a cleavage reaction catalyzed by the leukocyte 12-lipoxygenase in the presence of excess arachidonic acid and under anaerobic conditions. These conditions are satisfied by addition of 100 microM arachidonic acid to the leukocyte suspension (3 X 10(7) cells/ml); 12-hydroperoxyeicosatetraenoic acid is formed as the major product, excess arachidonic acid is available, and the concomitant leukocyte respiratory burst quickly depletes the solution of oxygen. Preliminary experiments indicate that this aldehyde product has significant biological activity in the activation of leukocytes. In the course of an intense inflammatory reaction it is conceivable that the conditions for synthesis of this C-12 trienal acid and related aldehydes could prevail; such aldehydes would constitute an additional class of lipoxygenase product which exacerbates the process of inflammation.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid↗

An intracerebroventricular perfusion system developed for the study of centrally acting antihypertensive drugs in the rat.

A method for the complete construction and employment of an intracerebroventricular perfusion system for the rat brain is described. Rats maintained on the system for up to 7 hr displayed no detectable change in cardiovascular status. Penetration of intracerebroventricular-administered methylene blue dye into all areas of the cerebroventricles demonstrated the accessibility of the injection volume throughout the ventricular system. The hypotensive and bradycardic response produced by a 1.5-microgram/kg dose of clonidine (a centrally active antihypertensive agent) administered via the intracerebroventricular implant was of considerably greater magnitude and duration than an equivalent intravenous dose. Administration of [3H]-labeled clonidine via the intracerebroventricular implant resulted in relatively minor accumulation of the drug into peripheral organs, when compared to that found in the brain. These supportive data suggest the general applicability of this approach for studying the selective central effects of pharmacologic agents in a relatively inexpensive and easily procured laboratory animal.

Animals↗

Characterization of the enzymatic and nonenzymatic peroxidative degradation of iron porphyrins and cytochrome P-450 heme.

Both purified cytochrome P-450 (P-450) and free ferriprotoporphyrin IX are destroyed by NADPH-P-450 reductase in the presence of NADPH and O2. The process appears to be mediated by H2O2 generated by reduction of O2. Six major products were identified from the reaction of H2O2 with ferri-protoporphyrin IX-hematinic acid, methylvinylmaleimide, and four dipyrrolic propentdyopents. The structures of the propentdyopents were elucidated by mass spectrometry and 1H NMR methods. Both free ferriprotoporphyrin IX and P-450 yielded these same products in similar relative ratios. P-450 heme in rat liver microsomes was degraded in the presence of O2 and NADPH and either NaN3 (a catalase inhibitor) or Fe-ADP (which promotes lipid peroxidation); the products were primarily hematinic acid, methylvinylmaleimide, and small quantities of one propentdyopent. Only the two maleimides were detected in the destruction of microsomal P-450 heme by cumene hydroperoxide and iodosylbenzene. On the basis of the reaction of H2O2 with several metal-octaethylethylporphyrin complexes and free octaethylporphyrin, the iron chelated in ferriprotoporphyrin IX is required for degradation by H2O2. Biliverdin is not an intermediate in the formation of maleimides and propentdyopents from heme. Experiments using the tetraethylpropentdyopent produced from ferrioctaethylporphyrin suggest that propentdyopents are not further cleaved to form the maleimides. A mechanism for oxidative heme destruction consistent with these observations is proposed.

Animals↗

Biochemical transformation of bulbar conjunctiva into corneal epithelium: an electrophoretic analysis.

When the entire corneal epithelium of the rabbit is mechanically removed, the denuded corneal stroma is completely resurfaced in 5-10 days with cells of conjunctival origin. The conjunctival cells differ from the corneal epithelial cells both morphologically and biochemically; however, within approximately 6 weeks, the conjunctival cells are converted into functional cornea epithelial cells. Using high-resolution agarose-gel electrophoresis, we compared the soluble proteins from functional conjunctiva (CON), functional corneal epithelium (EPI), and 'regenerating' corneal epithelium at eight intervals ranging from 24 hr to 6 weeks post-scraping. Comparison of CON and EPI patterns shows nine major mobility classes of proteins that fall into three subgroups: A = anodal, B = intermediate, and C = cathodal. The nine major classes have marked similarity in distribution and mobility, which may account for the apparent ease with which CON can transform into EPI during regeneration. Electrophoretic patterns of soluble proteins from regenerating epithelium suggest that the regeneration process occurs in three distinct phases: 24-72 hr post-scraping is a period of de-differentiation, 72 hr to 1 week is a period of reorganization, and 1-6 weeks is a period of differentiation. Specific protein groups are identified that represent fast-transforming, slow-transforming, conjunctival-specific, and corneal-specific proteins. Certain of these protein groups can be associated with particular stages in the regenerative process.

Animals↗

The stabilization of vancomycin by peptidoglycan analogs.

The glycopeptide antibiotic vancomycin is unstable in solution. It undergoes a rearrangement involving the conversion of an asparagine residue to isoaspartate to give an antibiotically inactive species, CDP-I. Peptide analogs of bacterial peptidoglycan, such as Ac-D-Ala-D-Ala and di-Ac-L-Lys-D-Ala-D-Ala bind to vancomycin and stabilize the antibiotic against degradation and consequent loss of activity. Protection by peptide is effective even under prolonged heating at 80 degrees C or steam sterilization (30 minutes, 10(4) kg/m2).

Chemical Phenomena↗

Identification of swainsonine as a probable contributory mycotoxin in moldy forage mycotoxicoses.

When infested with the fungus Rhizoctonia leguminicola, certain forages, e.g., red clover hay, can cause a "slobber syndrome" of varying severity when consumed by ruminants. The causative agent has been presumed to be slaframine [(1S,6S,8aS)-1-acetoxy-6-aminooctahydroindolizine], which is produced by R. leguminicola. In one serious outbreak of the slobber syndrome in horses, the red clover forage involved was carefully examined and found to contain R. leguminicola and slaframine. An identical hay sample is shown here by ion-exchange chromatographic and gas chromatographic-mass spectrometric analysis of appropriate hay extracts to also contain swainsonine [(1S,2R,8R,8aR)-1,2,8-trihydroxyoctahydroindolizine], a potent alpha-mannosidase inhibitor. Swainsonine has previously been isolated from pure cultures of R. leguminicola and from higher plants, namely the Darling pea (Swainsona canescens) and spotted locoweed (Astragalus lentiginosus). Consumption of Darling pea and spotted locoweed by livestock results in a severe neurological condition resembling that observed in hereditary mannosidosis in cattle and humans. Our findings indicate that swainsonine may be viewed as a mycotoxin when present in moldy forages consumed by livestock. The extent to which slaframine and swainsonine mycotoxicosis pose threats to animal husbandry and, indeed, to humans, if these alkaloids were to enter the human food chain, deserves serious consideration.

Alkaloids↗

The repeating sequence of the capsular polysaccharide of Staphylococcus aureus M.

The anomeric configuration of the sugar residues of the capsular polysaccharide antigen of Staphylococcus aureus M were established by 13C-n.m.r. spectroscopy, and the linkage positions by g.l.c.-m.s. after methylation, indicating a leads to 4)-O-(2-acetamido-2-deoxy-alpha-D-galactopyranosyluronic acid)-(1 leads to 4)-O-(2-acetamido-2-deoxy-alpha-D-galactopyranosyluronic acid)-(1 leads to 3)-O-(2-acetamido-2-deoxy-alpha-D-fucopyranosyl)-(1 leads to repeating unit. A taurine residue is linked by an amide bond, on the average, to every fourth 2-acetamido-2-deoxy-D-galactopyranosyluronic acid residue.

Amino Acids↗

Evidence for an hereditary defect in taurine transport in the ciliary epithelium of an inbred strain of rabbits.

The concentration of taurine in the aqueous humour and serum of 21 rabbits with hereditary buphthalmia (Bu rabbits-genotype bu/bu) was compared with the aqueous and serum taurine levels of eight strain-related normal rabbits (JAX) and nine non-strain-related normal rabbits (MCV). There was a significant difference in the mean aqueous taurine concentration in each of the three groups. The Bu rabbits had only 29% of the MCV rabbits' level while the JAX rabbits were intermediate with 56% of the MCV level. It is suggested that some of the JAX rabbits may be heterozygous and the Bu rabbits homozygous for a semi-dominant allele of a gene that is less efficient in taurine transport in the ciliary epithelium than the normal allele represented by the MCV animals.

Amino Acid Metabolism, Inborn Errors↗