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Biomedical subjects

Z Yang

Publications and source records attributed to Z Yang.

At least 721 records · Page 40Linked to original sources

Chronic fluoxetine or desmethylimipramine treatment alters 5-HT2 receptor mediated c-fos gene expression.

These studies examined the effects of a 21-day treatment regime with either the tricyclic antidepressant, desmethylimipramine (DMI), or the selective 5-HT uptake inhibitor, fluoxetine, on 5-HT2 receptors in rat brain, as assessed by selective agonist-mediated c-fos gene expression. Chronic, but not acute, treatment with fluoxetine (10 mg/kg, i.p. for 21 days) resulted in supersensitization of the response to an acute challenge (4 mg/kg, i.p.) with the selective 5-HT2 agonist, 2,5-dimethoxy-4-iodoamphetamine (DOI), both in frontal cortex and in hippocampus. Chronic treatment with DMI (10 mg/kg, i.p. for 21 days) resulted in a significant desensitization of the response to DOI. These findings are discussed in relation to the possible modes of action of these two clinically useful agents.

Amphetamines↗

Calculation of relative binding affinities of purine nucleoside phosphorylase inhibitors.

The competitive binding of inhibitors to purine nucleoside phosphorylase (PNP) has been experimentally measured. Fast and reliable computational methods to estimate binding would allow assessment of any proposed inhibitor before its synthesis. Binding-energy calculations with a representative set of PNP inhibitors were compared to the empirical values. Relatively simple and fast calculations were executed with X-PLOR, DelPhi and SoftDock. The computational results are mixed.

Journal Article↗

Neolactoglycosphingolipids, potential mediators of corneal epithelial cell migration.

Cell migration is a fundamental process of wound repair in biological systems. In an attempt to identify plasma membrane glycoconjugates which mediate cell migration, migrating and nonmigrating rabbit corneal epithelia were analyzed for reactivity with monoclonal antibodies (mAbs) specific for unsubstituted N-acetyl-lactosamine (mAb 1B2), Le(x) (mAbs 7A and MMA), and sialyl Le(x) (mAb CSLEX1) carbohydrate chains of neolactoglycoconjugates. Immunohistochemical analysis indicated that regardless of whether the epithelia analyzed were from corneas of animals in vivo, corneas in organ culture, or cells in tissue culture, migrating cells stained intensely with mAb 1B2, whereas nonmigrating cells either did not stain or stained only weakly. mAbs MMA and 7A stained migrating epithelium as well as basal and middle cell layers of normal, nonmigrating epithelium. mAb CSLEX1 did not stain wounded corneas but stained the superficial cell layer of normal corneal epithelium. Biochemical analyses by TLC immunostaining revealed the presence of three mAb 1B2-reactive glycosphingolipids (GSL), neolactotetraosyl-(nLc4, paragloboside), neolactohexaosyl- (nLc6), and neolacto-octaosylceramide (nLc8) in migrating epithelia. In contrast, nonmigrating epithelia contained only trace amounts of these glycolipids. Exogenous addition of nLc4, but not various other GSLs including a Le(x)-GSL (SSEA-1), stimulated re-epithelialization of wounds in an experimental model of corneal epithelial wound healing. Moreover, re-epithelialization of wounds was significantly inhibited by mAb 1B2 but not by mAb MMA. The data suggest that neolacto-GSLs of corneal epithelium may be among the molecules which mediate healing of corneal epithelial wounds by influencing cell migration.

Animals↗

Progesterone, but not estrogen, modulates the cAMP system mediated ir-beta-endorphin secretion and POMC mRNA expression from rat hypothalamic cells in culture.

It is now evident that hypothalamic beta-endorphin (beta EP) modulates reproductive physiology at the central level by inhibiting the function of neurons producing gonadotropin-releasing hormone (GnRH). Increasing evidence suggests that gonadal steroids, which play an important role in the long-loop negative feedback on the hypothalamus-pituitary-gonadal axis, may exert its indirect inhibitory action through modulating the production and release of hypothalamic beta EP. However, it remains unclear whether progesterone or estrogen alone or their combination is important to exert this effect. Employing long-term monolayer neonatal hypothalamic cell cultures, we reported here that whereas progesterone significantly enhanced forskolin-, N6,2'-O-dibutyryladenosine-3'5'-cyclic monophosphate [(Bu)2cAMP]-, 3-isobutyl-1-methylxanthine (IBMX)- or cholera toxin-stimulated immunoreactive (ir)-beta EP release from cultures treated daily for 4 consecutive days, the steroid alone produced little effect. This potentiation of progesterone was time-related and dose-dependent with an EC50 value of the steroid being approximately 25 nM; at this concentration the steroid increased ir-beta EP secretion about 1.6 times (P < 0.05) that induced by 5 microM forskolin alone. Similar effects were also observed for POMC mRNA levels in cultures subjected to 6 h of the above treatment regime. This potentiating effect appears specific as it can be mimicked by progestin, a progesterone receptor agonist and blocked by the progesterone receptor antagonist RU38486, but not RU28318, a mineralocorticoid receptor antagonist. Furthermore, beta-estradiol alone failed to exert a significant effect on basal, forskolin-induced or on forskolin and progesterone co-stimulated beta EP release or POMC mRNA levels in hypothalamic cell cultures.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The complete sequence of human lens gamma s-crystallin.

The complete sequence of human gamma s-crystallin has been determined and confirmed using a combination of MS methods, peptide sequencing and cDNA sequencing. Regions 21-35 and 102-107, which were previously assumed to be the same as the bovine sequence, differ from the bovine sequence at residues 22, 28, 31 and 104. An additional six residues were also found to be different from the original sequence determined for Pakastani lenses. Whether these differences represent errors in the original sequence or two different sequences among human lens crystallins is not yet known.

Amino Acid Sequence↗

Intramuscular delivery of rat kallikrein-binding protein gene reverses hypotension in transgenic mice expressing human tissue kallikrein.

The tissue kallikrein-kinin system has been postulated to play a role in blood pressure regulation. The activity of tissue kallikrein is controlled by a number of factors in vivo. Rat kallikrein-binding protein (RKBP) is a serine proteinase inhibitor which binds to and inhibits tissue kallikrein's activity in vitro. We have recently developed several hypotensive transgenic mouse lines which express human tissue kallikrein. In order to investigate the role of RKBP in blood pressure regulation, we delivered the RKBP to these transgenic mice by intramuscular injection. Expression of the RKBP was detected in skeletal muscle by reverse transcription-polymerase chain reaction and Southern blot analysis at 10, 20, 30, and 40 days post-injection. Immunoreactive RKBP levels in the muscle and serum of these mice were quantified by a RKBP-specific enzyme-linked immunosorbent assay and Western blot analysis. The levels of RKBP mRNA and immunoreactive protein were detectable at 10 days post-injection and increased significantly at 20 and 30 days. During this period, RKBP delivery significantly increased systemic blood pressure in the kallikrein transgenic mice to a level comparable to that of normotensive control mice. The RKBP and vector DNA delivery had no effect on the blood pressure of normotensive control mice. No serum antibodies to RKBP or its DNA were detected in the mice 40 days post injection. These results suggest that the increase of systemic blood pressure by RKBP delivery in these hypotensive transgenic mice may be mediated by inhibiting tissue kallikrein activity.

Animals↗

Molecular evolution of the hepatitis B virus genome.

The hepatitis B virus (HBV) has a circular DNA genome of about 3,200 base pairs. Economical use of the genome with overlapping reading frames may have led to severe constraints on nucleotide substitutions along the genome and to highly variable rates of substitution among nucleotide sites. Nucleotide sequences from 13 complete HBV genomes were compared to examine such variability of substitution rates among sites and to examine the phylogenetic relationships among the HBV variants. The maximum likelihood method was employed to fit models of DNA sequence evolution that can account for the complexity of the pattern of nucleotide substitution. Comparison of the models suggests that the rates of substitution are different in different genes and codon positions; for example, the third codon position changes at a rate over ten times higher than the second position. Furthermore, substantial variation of substitution rates was detected even after the effects of genes and codon positions were corrected; that is, rates are different at different sites of the same gene or at the same codon position. Such rates after the correction were also found to be positively correlated at adjacent sites, which indicated the existence of conserved and variable domains in the proteins encoded by the viral genome. A multiparameter model validates the earlier finding that the variation in nucleotide conservation is not random around the HBV genome. The test for the existence of a molecular clock suggests that substitution rates are more or less constant among lineages. The phylogenetic relationships among the viral variants were examined. Although the data do not seem to contain sufficient information to resolve the details of the phylogeny, it appears quite certain that the serotypes of the viral variants do not reflect their genetic relatedness.

Codon↗

Regulation of superoxide anion generation in bovine alveolar macrophages by bacterial lipopolysaccharide, serum proteins, and modulators of signal transduction.

The respiratory burst of phagocytes in an important leukocyte function which results in generation of oxygen species that are both microbicidal and potentially damaging to host tissues. We investigated regulation of the respiratory burst of alveolar macrophages in response to lipopolysaccharide (LPS) derived from gram-negative bacteria, serum proteins, and several modulators of signal transduction. When employed as a single stimulus, LPS (E. coli 055:B5, 10 ng/ml-1 microgram/ml) was a weak stimulus for generation of superoxide anion (O2-) as compared to the potent effect of the protein kinase C activator, phorbol 12-myristate 13-acetate (PMA; 500 ng/ml). However, when LPS was combined with fetal bovine serum (FBS; 0.4-1.0% vol/vol, equivalent to 128-320 micrograms protein/ml), O2- generation was enhanced approximately two-fold over LPS alone. A chromatographically-derived bovine serum fraction which contained bovine lipopolysaccharide-binding protein (bLBP; 0.25-1.0 microgram/ml) was an effective substitute for FBS at a much lower protein concentration than whole FBS, and a similar synergistic effect with LPS on O2- generation was observed. Stimulation of macrophages for generation of O2- either with LPS alone or with LPS plus serum/serum fraction was suppressed by the protein tyrosine kinase inhibitor heribimycin A (0.2 ng/ml), and the calcium chelator BAPTA (12 microM), but not by modulators of G-proteins, including pertussis toxin (10 ng/ml) and cholera toxin (5 micrograms/ml protein). Essentially complete inhibition of O2- synthesis by herbimycin A and BAPTA occurred in the presence of LPS and the bLBP-containing serum fraction (1 microgram/ml protein), but only partial inhibition (46.7% and 64.1%, respectively) was observed in the presence of LPS plus FBS (256 micrograms/ml protein). These results indicate that when LPS is used as a sole stimulus it induces modest respiratory burst activity. However, when LPS is combined with appropriate serum components, it stimulates alveolar macrophages to generate larger amounts of O2-. Cellular signaling pathways important in stimulation of macrophages by LPS and serum components are protein tyrosine kinase- and Ca(++)-dependent, but do not relay on G-protein-mediated signaling.

Animals↗

Glutathione adducts, not carbamylated lysines, are the major modification of lens alpha-crystallins from renal failure patients.

alpha-Crystallins from the water-soluble and the water-insoluble, guanidine-soluble portions of lenses from four renal failure patients and two normal donors of similar age were isolated and enzymatically digested into peptides. Molecular weights of the peptides, determined by fast atom bombardment mass spectrometry, indicated modifications specifically associated with renal failure. The only modifications observed in the alpha-crystallins from renal failure patients, but not in the normal old lenses, were glutathione adducts to Cys 131 and Cys 142. These adducts were present in the lenses of all four renal failure patients, but not in the two normal old lenses. The four lenses from the renal failure patients were searched for evidence of carbamylation at lysyl or cysteinyl residues: carbamylation was not detected. Because the same mass spectrometric methods had previously demonstrated sufficient sensitivity and specificity to detect as little as 5% modification in the examination of in vitro carbamylated bovine lenses, these results indicated that carbamylation is not a major modification of the lens alpha-crystallins of renal failure patients.

Aged↗

Improvement of tracheal autograft survival with transplantation into the greater omentum.

BACKGROUND: Reconstruction of tracheal defects with tracheal grafts is not practicable clinically because the problem of tracheal graft revascularization has not been solved successfully. We conducted experiments to investigate efficacy of implanting tracheal graft into the greater omentum for revascularization and possibility of adopting staged transplantation procedure for repair of tracheal defect. METHODS: Twenty-four mongrel dogs were randomly and equally divided into groups I and II. Six-ring cervical tracheal segments were harvested as autografts. The grafts were wrapped with the omentum and placed into the peritoneal cavity in group I, and reimplanted with omentopexy in group II. Four grafts were examined macroscopically, microscopically, and 35S-autoradiographically on postoperative days 3, 7, and 14, respectively. RESULTS: Epithelium loss was evident in the mucosas of the grafts except the 4 from group I. Percentages of viable chondrocytes assessed with 35S-autoradiography were significantly higher in tracheal grafts from group I than group II. All tracheal grafts with their own omental pedicles could be brought to any portions of the trachea. CONCLUSIONS: We conclude that prior implantation of tracheal graft in the omentum is beneficial for preservation of its structure, and reconstruction of a tracheal defect with a tracheal graft implanted first into the omentum is feasible.

Animals↗

Interleukin-6 secretion by bacterial lipopolysaccharide-stimulated bovine alveolar macrophages in vitro.

Interleukin-6 (IL-6) is a pluripotent cytokine that may play a role in pulmonary defense against bacterial pathogens. We have quantitated the response of bovine alveolar macrophages (bAM) to bacterial lipopolysaccharide (LPS; E. coli 055: B5) in vitro using the IL-6 sensitive 7TD1 cell line. Bacteria LPS in the absence of serum induced IL-6 secretion from bAM (1 x 10(6) ml-1) over a range of LPS concentrations from 10 ng ml-1 to 10 micrograms ml-1. This resulted in IL-6 levels ranging from approximately 5 to over 200 U ml-1.IL-6 secretion by from approximately 5 to over 200 U ml-1.IL-6 secretion by LPS-stimulated bAM was increased by 24 h poststimulation, and continued to increase up to 72 h after stimulation. Fetal bovine serum (FBS, 1% vol/vol; 320 micrograms ml-1) enhanced IL-6 secretion from macrophages in the presence of LPS by approximately 10-fold compared with LPS alone. A bovine serum fraction (1 microgram ml-1 protein) prepared using ion-exchange chromatography also markedly enhanced IL-6 secretion versus LPS alone. The stimulatory effect of IL-6-like activity in the bAM supernatants was neutralized by an anti-human IL-6 polyclonal antibody. Northern blot analysis revealed increased IL-6 mRNA at 2 h poststimulation with LPS + FBS, peak levels at 4 h, and levels were decreased by 6 h poststimulation. Results suggest that IL-6 is secreted by bovine alveolar macrophages, and that bacterial LPS and serum components synergize to produce this response.

Animals↗

Hydroxyl radical-mediated oxidation of serotonin: potential insights into the neurotoxicity of methamphetamine.

When incubated with a hydroxyl radical (HO.)-generating system (ascorbic acid/Fe(2+)-EDTA/O2/H2O2), 5-hydroxytryptamine (5-HT; serotonin) is rapidly oxidized initially to a mixture of 2,5-, 4,5-, and 5,6-dihydroxytryptamine (DHT). The major reaction product is 2,5-DHT, which at physiological pH exists as its keto tautomer, 5-hydroxy-3-ethylamino-2-oxindole (5-HEO). Rapid autoxidation of 4,5-DHT gives tryptamine-4,5-dione (T-4,5-D), which reacts with the C(3)-centered carbanion of 5-HEO to give 3,3'-bis(2-aminoethyl)-5-hydroxy-[3,7'-bi-1H-indole]-2,4',5'- 3H-trione (7). The latter slowly cyclizes to 3'-(2-aminoethyl)-1',6',7',8'-tetrahydro-5-hydroxy-spiro[3H-indole-3,9'- [9H]pyrrolo[2,3-f]quinoline]-2,4',5' (1H)-trione (9). A minor amount of T-4,5-D dimerizes to give 7,7'-bi-(5-hydroxytryptamine-4-one) (7,7'-D). In the presence of GSH, the reaction of T-4,5-D with 5-HEO is diverted and, in the presence of sufficient concentrations of this tripeptide, completely blocked. This is because GSH preferentially reacts with T-4,5-D to give 7-S-glutathionyltryptamine-4,5-dione (11). The results of this investigation suggest that 5,6-DHT, 5-HEO, 7, and 9 are products unique to the HO.-mediated oxidation of 5-HT. Thus, the observation of other investigators that 5,6-DHT is formed in the brains of rats following a large dose of methamphetamine (MA) suggests that this drug might evoke HO. formation. However, the present in vitro study indicates that 5,6-DHT is a rather minor, unstable product of the HO.-mediated oxidation of 5-HT and suggests that detection of 5-HEO, 7/9, and 11 in rat brain following MA administration could provide additional support for HO. formation. Furthermore, one or more of the intermediates and major products of oxidation of 5-HT by HO. might, in addition to 5,6-DHT, contribute to the MA-induced degeneration of serotonergic neurons.

Chromatography, High Pressure Liquid↗

A space-time process model for the evolution of DNA sequences.

We describe a model for the evolution of DNA sequences by nucleotide substitution, whereby nucleotide sites in the sequence evolve over time, whereas the rates of substitution are variable and correlated over sites. The temporal process used to describe substitutions between nucleotides is a continuous-time Markov process, with the four nucleotides as the states. The spatial process used to describe variation and dependence of substitution rates over sites is based on a serially correlated gamma distribution, i.e., an auto-gamma model assuming Markov-dependence of rates at adjacent sites. To achieve computational efficiency, we use several equal-probability categories to approximate the gamma distribution, and the result is an auto-discrete-gamma model for rates over sites. Correlation of rates at sites then is modeled by the Markov chain transition of rates at adjacent sites from one rate category to another, the states of the chain being the rate categories. Two versions of nonparametric models, which place no restrictions on the distributional forms of rates for sites, also are considered, assuming either independence or Markov dependence. The models are applied to data of a segment of mitochondrial genome from nine primate species. Model parameters are estimated by the maximum likelihood method, and models are compared by the likelihood ratio test. Tremendous variation of rates among sites in the sequence is revealed by the analyses, and when rate differences for different codon positions are appropriately accounted for in the models, substitution rates at adjacent sites are found to be strongly (positively) correlated. Robustness of the results to uncertainty of the phylogenetic tree linking the species is examined.

Animals↗

A new method of inference of ancestral nucleotide and amino acid sequences.

A statistical method was developed for reconstructing the nucleotide or amino acid sequences of extinct ancestors, given the phylogeny and sequences of the extant species. A model of nucleotide or amino acid substitution was employed to analyze data of the present-day sequences, and maximum likelihood estimates of parameters such as branch lengths were used to compare the posterior probabilities of assignments of character states (nucleotides or amino acids) to interior nodes of the tree; the assignment having the highest probability was the best reconstruction at the site. The lysozyme c sequences of six mammals were analyzed by using the likelihood and parsimony methods. The new likelihood-based method was found to be superior to the parsimony method. The probability that the amino acids for all interior nodes at a site reconstructed by the new method are correct was calculated to be 0.91, 0.86, and 0.73 for all, variable, and parsimony-informative sites, respectively, whereas the corresponding probabilities for the parsimony method were 0.84, 0.76, and 0.51, respectively. The probability that an amino acid in an ancestral sequence is correctly reconstructed by the likelihood analysis ranged from 91.3 to 98.7% for the four ancestral sequences.

Amino Acid Sequence↗

On the use of nucleic acid sequences to infer early branchings in the tree of life.

Simplifying assumptions made in various tree reconstruction methods--notably rate constancy among nucleotide sites, homogeneity, and stationarity of the substitutional processes--are clearly violated when nucleotide sequences are used to infer distant relationships. Use of tree reconstruction methods based on such oversimplified assumptions can lead to misleading results, as pointed out by previous authors. In this paper, we made use of a (discretized) gamma distribution to account for variable rates of substitution among sites and built models that allowed for unequal base frequencies in different sequences. The models were nonhomogeneous Markov-process models, assuming different patterns of substitution in different parts of the tree. Data of the small-subunit rRNAs from four species were analyzed, where base frequencies were quite different among sequences and rates of substitution were highly variable at sites. Parameters in the models were estimated by maximum likelihood, and models were compared by the likelihood-ratio test. The nonhomogeneous models provided significantly better fit to the data than homogeneous models despite their involvement of many parameters. They also appeared to produce reasonable estimation of the phylogenetic tree; in particular, they seemed able to identify the root of the tree.

Base Sequence↗

Development of nitrate tolerance in human arteries and veins: comparison of nitroglycerin and SPM 5185.

Nitrate tolerance is a clinical problem in patients with coronary artery disease and heart failure. Human internal mammary arteries and saphenous veins obtained intraoperatively were suspended in organ chambers, and isometric tension was measured. In the artery, nitroglycerin elicited a potent relaxation, which was significantly diminished after prolonged incubation with nitroglycerin (10(-6) M, 1 h). In contrast, no tolerance occurred in saphenous vein under the same conditions. However, incubation with 10(-5) M nitroglycerin also developed tolerance. Compared to nitroglycerin, the new cysteine-containing mononitrate SPM 5185 exhibited a lower sensitivity but comparable maximal relaxation in arteries and veins. In nitroglycerin-tolerant arteries and veins, SPM 5185 caused relaxations similar to those under control conditions. Our results show that in isolated blood vessels, vascular nitrate tolerance occurs more readily in the mammary artery than in the saphenous vein. SPM 5185 seems to be less prone to the development of tolerance, which may be advantageous during chronic nitrate therapy.

Acetylcysteine↗

Molecular and cellular mechanisms of atherosclerosis.

At least three distinct cellular mechanisms are currently thought to be responsible for the initiation of atherosclerotic lesions in humans: (1) accumulation of lipids and plasma-derived lipoproteins in the arterial intima; (2) smooth muscle cell migration from the media into the intima, and smooth muscle cell proliferation or accumulation, or both, within the intima; and (3) accumulation of platelet and/or fibrin deposits in the intima. Independent of the triggering factor, it appears that the first step in atherogenesis involves activation of repair mechanisms in the blood vessel in an attempt to restore vascular homeostasis, which involves a delicate balance of growth promoting and growth inhibitory activities of the vascular wall cells. The healing process involves a series of specific and temporally coordinated events, such as platelet aggregation, monocyte adhesion and migration across endothelial cells, and migration and proliferation of vascular smooth muscle cells, which are normally orchestrated by a variety of growth factors, cytokines, adhesion molecules, and extracellular matrix proteins in a controlled, although not yet fully understood, manner. Alteration in any of these steps during the healing process can lead to changes in the patterns of protein synthesis, processing, and secretion in these cells. These in turn result in connective tissue deposition, lipid accumulation, cell death, mineralization, and finally the development of advanced, occluding atherosclerotic plaques.

Arteriosclerosis↗