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Biomedical subjects

W Song

Publications and source records attributed to W Song.

At least 181 records · Page 10Linked to original sources

Phorbol myristate acetate-mediated stimulation of transcytosis and apical recycling in MDCK cells.

We observed that phorbol myristate acetate (PMA) stimulates transcytosis of the polymeric immunoglobulin receptor (pIgR) in MDCK cells. Apical release of pre-endocytosed ligand (dimeric IgA) bound to the pIgR can be stimulated twofold within 7 min of addition of PMA while recycling of the ligand from the basal surface is not affected. In addition, apical surface delivery of pIgR and cleavage of its ectodomain to secretory component (SC) is also stimulated by PMA. The recycling of apically internalized ligand back to the apical surface is similarly stimulated. These results suggest that the stimulation of apical delivery is from an apical recycling compartment. The effect of PMA suggests that protein kinase C (PKC) is involved in the regulation of pIgR trafficking in MDCK cells. To test this we down regulated PKC activity by pre-treating cells with PMA for 16 h and observed that transcytosis could no longer be stimulated by PMA. Western blots show that the PKC isozymes alpha and to a lesser extent epsilon, are depleted from MDCK cells which have been pre-treated with PMA for 16 h and that treatment of MDCK cells with PMA for 5 min causes a dramatic translocation of the PKC alpha isozyme and a partial translocation of the epsilon isozyme from the cytosol to the membrane fraction of cell homogenates. This translocation suggests that the alpha and/or epsilon isozymes may be involved in PMA mediated stimulation of transcytosis. A mutant pIgR in which serines 664 and 726, the major sites of phosphorylation, are replaced by alanine is stimulated to transcytose by PMA, suggesting that phosphorylation of pIgR at these sites is not required for the effect of PMA. These results suggest that PMA-mediated stimulation of pIgR transcytosis may involve the activation of PKC alpha and/or epsilon, and that this stimulation occurs independently of the major phosphorylation sites on the pIgR. Finally, PMA stimulates transcytosis of basolaterally internalized transferrin, suggesting that PMA acts to generally stimulate delivery of endocytosed proteins to the apical surface.

Animals↗

Requirement for RGR1 and SIN4 in RME1-dependent repression in Saccharomyces cerevisiae.

RME1 is a zinc-finger protein homolog that functions as a repressor of the meiotic activator IME1. RME1 is unusual among yeast repressors in two respects: it acts over a considerable distance (2 kbp) and it can activate transcription from a binding site separated from its natural flanking region. To identify genes required for RME1 to exert repression, we have selected mutants with improved RME1-dependent activation. One rare mutant was defective in RME1-dependent repression of an artificial reporter gene as well as the native IME1 gene. The mutation permits sporulation of a/a diploids, which express RME1 from its natural promoter, and of a/alpha diploids constructed to express RME1 from the GAL1 promoter. The mutation also causes temperature-sensitive growth and a methionine or cysteine requirement. Analysis of a complementing genomic clone indicates that the mutation lies in a known essential gene, RGR1. Prior studies have indicated a functional relationship between RGR1 and SIN4 (also called TSF3); we have found that a sin4 null mutation also causes a defect in RME1-dependent repression and a methionine or cysteine requirement. The rgr1 and sin4 mutations do not cause a reduction of RME1 polypeptide levels. The defect in RME1-dependent repression may result from effects of sin4 and, presumably, rgr1 on chromatin structure.

Cloning, Molecular↗

Full-load expansion technique and preliminary clinical application.

For accelerating the inflation process of soft-tissue expansion, a continuous inflation protocol regarding pain as the criterion of overinflation, the full-load expansion technique, has been introduced. It is carried out by restricting persistently the pressure in the expander near the pain threshold in a state of dynamic equilibrium between the infusing rate and the skin expansion velocity with a simple and practical device. This inflation is neither at a uniform infusion rate nor at a constant filling pressure. Nineteen expanders in 13 patients were inflated following this protocol. Their inflations were fulfilled in 5 to 20 days, depending individually on their anatomic regions, total volumes of infusion, areas of the overlying skin, and patient susceptibilities.

Adult↗

An Arabidopsis peptide transporter is a member of a new class of membrane transport proteins.

An Arabidopsis peptide transport gene was cloned from an Arabidopsis cDNA library by functionally complementing a yeast peptide transport mutant. The Arabidopsis plant peptide transporter (AtPTR2) allowed growth of yeast cells on dipeptides and tripeptides but not peptides four residues and higher. The plant peptide transporter also conferred sensitivity to a number of ethionine-containing, toxic peptides of chain length three or less and restored the ability to take up radiolabeled dileucine at levels similar to that of the wild type. Dileucine uptake was reduced by the addition of a variety of growth-promoting peptides. The sequence of a cDNA insert of 2.8 kb indicated an open reading frame encoding a 610-amino acid polypeptide (67.5 kD). Hydropathy analysis predicted a highly hydrophobic protein with a number of potential transmembrane segments. At the amino acid level, the Arabidopsis plant peptide transporter shows 24.6, 28.5, and 45.2% identity to the Arabidopsis nitrate-inducible nitrate transporter (CHL1), the rabbit small intestine oligopeptide transporter (PepT1), and the yeast peptide transporter (Ptr2p), respectively, but little identity to other proteins known to be involved in peptide transport. Root growth of Arabidopsis seedlings exposed to ethionine-containing toxic peptides was inhibited, and growth was restored by the addition of certain peptides shown to compete with dileucine uptake in yeast expressing the Arabidopsis transport gene. Consistent with the observed inhibition of root growth by toxic peptides, the peptide transporter is expressed in the roots of Arabidopsis seedlings. This study represents the characterization of a plant peptide transporter that is a member of a new class of related membrane transport proteins.

Amino Acid Sequence↗

Attenuation by dexamethasone of endotoxin protection against ischaemia-induced ventricular arrhythmias.

Ventricular arrhythmias from a 30 min occlusion of the left coronary artery were assessed in Langendorff perfused isolated hearts removed from rats administered either saline, or endotoxin derived from Escherichia coli (2.5 mg kg-1 i.p.) given either 2, 4, 8, 24 or 48 h previously. Arrhythmia severity was markedly reduced in those hearts removed from rats administered endotoxin with a maximum protection at 8h; there was a marked reduction in the incidence of ventricular fibrillation (from 54% to 4%) and in the number of ventricular premature beats during the occlusion period (e.g. from 1165 +/- 144 to 37 +/- 19; P < 0.01). Dexamethasone (3 mg kg-1, given 1 h prior to endotoxin or saline) markedly attenuated the protection afforded by endotoxin.

Animals↗

[The phenotypic change of smooth muscle cells in the media of pulmonary intra-acinar arteries during hypoxia].

The phenotypic change of smooth muscle cells (SMCs) in the media of pulmonary intraacinar arteries (IAA) was observed in rats during hypoxia. From 3 to 40 exposure days, pulmonary arterial pressure (PAP) and right ventricular hypertrophy increased parallely. From 1 to 5 exposure days, SMCs still displayed the "contractile" phenotype, but the amount of intercellular collagen slightly increased. After 7 exposure days, some medial SMCs changed into the "fully" or "partially" "synthetic" phenotype with an excess of intercellular collagen. From 14 to 40 exposure days, other than some SMCs of partially "synthetic" phenotype, a great number of SMCs acquired the "contractile" phenotype characteristics, but the synthetic and secretive organelles and intercellular collagen were still more than those in the groups from 1 to 5 exposure days. Our results suggested that along with the prolongation of hypoxic exposure, the kinetic changes of SMC phenotype might not parallel with PAP change.

Animals↗

Synthesis and characterization of N-parinaroyl analogs of ganglioside GM3 and de-N-acetyl GM3. Interactions with the EGF receptor kinase.

A specific plasma membrane glycosphingolipid, known as ganglioside GM3, can regulate the intrinsic tyrosyl kinase activity of the epidermal growth factor (EGF) receptor; this modulation is not associated with alterations in hormone binding to the receptor. GM3 inhibits EGF receptor tyrosyl kinase activity in detergent micelles, in plasma membrane vesicles, and in whole cells. In addition, immunoaffinity-purified EGF receptor preparations contain ganglioside GM3 (Hanai et al. (1988) J. Biol. Chem. 263, 10915-10921), implying that the glycosphingolipid is intimately associated with the receptor kinase in cell membranes. Both the nature of this association and the molecular mechanism of kinase inhibition remain to be elucidated. In this report, we describe the synthesis of a fluorescent analog of ganglioside GM3, in which the native fatty acid was replaced with trans-parinaric acid. This glycosphingolipid inhibited the receptor kinase activity in a manner similar to that of the native ganglioside. A modified fluorescent glycosphingolipid, N-trans-parinaroyl de-N-acetyl ganglioside GM3, was also prepared. This analog, like the nonfluorescent de-N-acetyl ganglioside GM3, had no effect on receptor kinase activity. Results from tryptophan fluorescence quenching and steady-state anisotropy measurements in membranes containing these fluorescent probes and the human EGF receptor were consistent with the notion that GM3, but not de-N-acetyl GM3, interacts specifically with the receptor in intact membranes.

3T3 Cells↗

Purification of a functional receptor for Clostridium difficile toxin A from intestinal brush border membranes of infant hamsters.

A receptor for Clostridium difficile toxin A was purified from brush border membranes (BBMs) from the small intestine of infant hamsters. The BBMs were solubilized with Triton X-114, and the solubilized receptor was purified with use of a toxin A immobilized affinity-chromatography column and differential temperature elution. SDS-PAGE and silver staining of the purified receptor revealed numerous high-molecular-weight bands. However, ligand blotting analysis with 125I-toxin A used as the probe identified a 163-kD protein as the predominate toxin A-binding molecule. Toxin A bound to the purified receptor at physiological temperature, but the amount of toxin bound increased at lower temperatures. Bovine thyroglobulin bound to toxin A and inhibited its binding to the purified receptor. Preincubation of the receptor with lectins produced by Bandeirea simplicifolia or Datura stramonium reduced specific binding by 125I-toxin A. Our data indicate that the purified toxin A receptor from small intestine BBMs of infant hamsters is a galactose- and N-acetylglucosamine-containing glycoprotein.

Animals↗

Toxicological investigations on silicon carbide. 2. In vitro cell tests and long term injection tests.

Silicon carbide (SiC) dust and other dusts for comparison were injected intratracheally at a high dose (50 mg) into rats and the response of the lungs and the lymph nodes was studied after an appropriate experimental period. The indices studied were: histological changes in the lung and lymph nodes, organ weights, the formation of collagenous fibres, and the appearance of quartz typical areas. According to several epidemiological investigations and previous experimental animal studies, SiC produces silicogenic (fibrogenic) effects. No changes in the tissues studied in terms of damaging fibrogenic effects could be found after eight months (first series) and three and 12 months (second series). In particular, the histological findings and the absence of quartz typical areas as well as the quantitative determination of collagen fibres show that SiC had no harmful effects on tissues. Based on these results, the extent to which other exposures during the production of SiC can be responsible for the established radiological alterations is discussed. Without doubt the following may be confounders: SiC fibres, crystalline SiO2 (quartz, cristobalite, tridymite), and possibly gaslike emissions (SO2). From the hygienic medical point of view the workplaces during SiC manufacture should be examined carefully. The substance SiC dust as such can be considered as inert from the experimental results based on qualitative and extremely sensitive procedures. A revision of the present threshold value for SiC in ther German MAK list is called for.

Animals↗

Evaluation of cofactor effect of feline syncytium-forming virus on feline immunodeficiency virus infection.

Although feline immunodeficiency virus (FIV) and the unrelated retrovirus feline leukemia virus (FeLV) are associated with acquired immune deficiency in cats, experimental and field evidence indicates that coinfection with both viruses may lead to more serious disease syndrome. A third feline retrovirus, feline syncytium-forming virus (FeSFV), which is far more prevalent than either FIV or FeLV and is considered nonpathogenic in nature, is consistently coisolated from sick, FIV-infected cats. To determine the potential role of FeSFV in enhancement of FIV-mediated disease, persistent FeSFV infection was established in 14 of 24 nine-month-old cats. Four months later, half the FeSFV-infected and half the noninfected cats were inoculated with blood obtained from a cat persistently infected with the Petaluma strain of FIV. At postinoculation week 17, 1 male cat infected with only FIV died of bacterial bronchopneumonia that could have been attributed to FIV-induced acquired immune deficiency-like syndrome. However, none of the remaining cats had clinical illness, whether infected with either virus alone or coinfected with both viruses. As early as postinoculation week 6, decreases were observed in the CD4+ to CD8+ T-lymphocyte ratio of both groups of cats inoculated with FIV. Infection with FeSFV had no effect on the CD4+ to CD8+ T-cell ratio. Mitogen stimulation assays and total WBC count were unaffected by FeSFV infection, although an increase in numbers of neutrophils from FeSFV-infected cats was consistent, especially when compared with the decrease observed after FIV infection.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Induction of feline immunodeficiency virus-specific cytolytic T-cell responses from experimentally infected cats.

We have examined the in vitro induction and activity of feline immunodeficiency virus (FIV)-specific cytolytic T cells obtained from cats experimentally infected for 7 to 17 weeks or 20 to 22 months with the Petaluma isolate of FIV. Normal or FIV-infected autologous and allogeneic T lymphoblastoid cells were used as target cells in chromium-51 or indium-111 release assays. When effector cells consisted of either fresh peripheral blood mononuclear cells or concanavalin A- and interleukin-2-stimulated cells, only low levels of cytotoxicity were observed. However, the levels of FIV-specific cytotoxicity were consistently higher in both groups of cats following in vitro stimulation of the effector cells with irradiated, FIV-infected autologous T lymphoblastoid cells and interleukin-2. The effector cells lysed autologous but not allogeneic FIV-infected target cells and were composed predominantly of CD8+ T cells, indicating that the FIV-specific cytotoxicity measured in this system is mediated by CD8+, major histocompatibility complex class I-restricted T cells. These studies show that FIV-specific cytolytic T cells can be detected as early as 7 to 9 weeks postinfection, and they define a system to identify virus-encoded epitopes important in the induction of protective immunity against lentiviruses.

Animals↗

A method for preparing analytically pure sodium dithionite. Dithionite quality and observed nitrogenase-specific activities.

Sodium dithionite (Na2S2O4) is widely used as a reductant in biochemical studies, but has not been available in its pure form. A convenient, detailed procedure is given for the recrystallization of commercial dithionite from 0.1 M NaOH-methanol under anaerobic conditions. Twice-recrystallized dithionite had a purity of 99 +/- 1% by UV spectroscopy (A315) and elemental analysis. The influence of dithionite quality on the apparent reduction activities of the nitrogenase components (Av1 and Av2) from Azotobacter vinelandii was investigated.

Crystallization↗

Characteristics of cholesterol 7 alpha-hydroxylase and 7 alpha-hydroxycholesterol hydroxylase activities of rodent liver.

A second cholesterol-derived metabolite in addition to 7 alpha-hydroxycholesterol was observed to be produced from endogenous microsomal cholesterol in the presence of hamster liver microsomal fractions and NADPH, when analyzed by HPLC using the method of Ogishima and Okuda (Anal Biochem 158: 228-232, 1986). However, only 7 alpha-hydroxycholesterol was produced in the presence of rat hepatic microsomal protein fractions and NADPH. The second metabolite was facilely produced when endogenous 7 alpha-hydroxycholesterol was incubated with hamster liver microsomes and NADPH, but not with rat liver microsomes. The second metabolite derived from either endogenous cholesterol or exogenous 7 alpha-hydroxycholesterol contained three hydroxyl groups as shown by mass spectrometric analysis. After oxidation of the 3 beta-ol group by cholesterol oxidase, the metabolite comigrated with 7 beta-hydroxycholest-3-one on normal phase HPLC, but was resolved from both 7 alpha- and 7 beta-hydroxycholest-3-one on reverse phase HPLC. The data indicate that the second metabolite is a hydroxylated product of 7 alpha-hydroxycholesterol, possibly cholest-5-ene-3 beta,7 alpha, 12 alpha-triol. Cholestyramine feeding increased production of both 7 alpha-hydroxycholesterol and its metabolite from endogenous cholesterol by 3-fold in hamster liver microsomes in vitro. However, the direct conversion of 7 alpha-hydroxycholesterol to the metabolite by hamster liver microsomes was not increased appreciably after cholestyramine feeding (20-30%). The hydroxylation of 7 alpha-hydroxycholesterol was similar in characteristics to cholesterol 7 alpha-hydroxylase activity in that it was dependent on NADPH, was inhibited by several known P450 inhibitors, and was affected by an inhibitory autobody elicited against rat hepatic NADPH: cytochrome P450 oxidoreductase. 5,6- and 7,8-Benzoflavone were poor inhibitors (IC50 approximately 1 mM) of cholesterol 7 alpha-hydroxylase activity in liver microsomes from cholestyramine-fed rats, but caused a striking enhancement of the 7 alpha-hydroxylase activity of liver microsomes from untreated rats in vitro. In contrast, 7,8-benzoflavone inhibited cholesterol 7 alpha-hydroxylase and 7 alpha-hydroxycholesterol hydroxylase activities of microsomes from normal and cholestyramine-fed hamsters. However, 5,6-benzoflavone stimulated cholesterol 7 alpha-hydroxylase activity in liver microsomes from normal and cholestyramine-fed hamsters, but inhibited 7 alpha-hydroxycholesterol hydroxylase activity by approximately 50%. These results suggest that hepatic cholesterol 7 alpha-hydroxylase and 7 alpha-hydroxycholesterol hydroxylase activities apparently involve multiple forms of cytochrome P450 in untreated and cholestyramine-treated hamsters.

Animals↗

Isolation of a rat S100 alpha cDNA and distribution of its mRNA in rat tissues.

In order to clarify the reported discrepancies in S100 alpha protein and mRNA distribution in rat tissues, a rat S100 alpha cDNA has been isolated and this species homologous probe along with a rat S100 beta cDNA probe has been used to examine S100 mRNA expression in rat tissues. Although the rat S100 alpha cDNA was missing approximately 30 nucleotides of coding sequence, only 4 conservative changes in amino acid sequence were observed when the deduced amino acid sequence was compared to the bovine S100 alpha amino acid sequence. Thus, S100 alpha proteins, like S100 beta proteins, are highly conserved among species. All nineteen of the tissues examined (including cerebrum and cerebellum) contained S100 alpha mRNA. In addition, S100 beta mRNA was detected in thirteen of the nineteen tissues examined. These results are in agreement with previous protein distribution studies and further demonstrate that S100 proteins are not brain-specific and are expressed in a large number of tissues. Although S100 alpha and S100 beta mRNAs were detected in rat tissues which had previously been reported to contain S100 alpha and S100 beta protein, a direct correlation between the protein and mRNA levels were not observed, suggesting that different mechanisms regulate S100 expression in various tissues. S100 alpha exhibited a single similar size mRNA species (0.5 Kb) in all tissues examined, as did S100 beta (1.5 Kb), suggesting that the individual S100 proteins are expressed as single mRNA and protein products in rat tissues.

Amino Acid Sequence↗

[A twin study on the heredity of electroencephalogram].

A human twin study was undertaken to research the heredity of the EEG. The accuracy of the twins zygosity diagnosis was more than 98 per cent. Thirteen pairs of monozygotic twin had an intraclass correlation of 0.43 in alpha frequency and 0.65 in alpha sequence time per minute, and twelve pairs of dizygotic twins had an intraclass correlation of 0.20 and 0.34. Their hereditability was estimated by three methods as 29-58 per cent and 47-66 per cent, respectively.

Adult↗

[Quality of Schisandra incarnata Stapf].

In the western part of Hubei province we have collected a medicinal plant by the local name of "North Wuweizi". It has been identified as Schisandra incarnata. A tetrahydrofuran lignan chicanine has been isolated from the kernel of the plant. Pharmacological experiments show that S. incarnata possesses activities of lowering sGPT levels as well as prolonging the sleeping time induced by phenobarbital.

Alanine Transaminase↗