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Biomedical subjects

S Wu

Publications and source records attributed to S Wu.

At least 343 records · Page 19Linked to original sources

Avian reovirus-induced syncytium formation is independent of infectious progeny virus production and enhances the rate, but is not essential, for virus-induced cytopathology and virus egress.

The nonenveloped avian reoviruses represent a distinct antigenic subgroup of orthoreoviruses. Unlike their mammalian counterparts, the avian reoviruses exhibit the unusual property of inducing rapid and extensive syncytium formation in cell cultures, a cytopathic effect more commonly associated with enveloped virus replication. While the syncytium-inducing capability of avian reovirus has been known for quite some time, the relationship between cell fusion and the virus replication cycle has not been determined. The conservation of the syncytial phenotype among all field isolates of avian reovirus suggests that avian reovirus-induced syncytium formation either reflects an essential step in the virus replication cycle involving intracellular membrane interactions or that cell fusion contributes to enhanced virus replication in infected animals. In order to distinguish between these possibilities, we have examined several aspects of virus replication in the presence of inhibitors of syncytium formation. Inhibitors of intracellular vesicle transport and O-linked glycosylation eliminated or markedly reduced syncytium formation with little effect on the rate or extent of virus macromolecular synthesis and infectious progeny virus production. Moreover, syncytium formation was not required for virus-induced cytopathology or virus egress but did significantly enhance the rate of both of these processes. The data indicate that, unlike the syncytium-inducing enveloped viruses, the membrane interactions and protein trafficking required for avian reovirus-induced syncytium formation do not reflect the sequelae of an essential step in the virus replication cycle. These results suggest that the conservation of the avian reovirus syncytial phenotype may reflect a fortuitous aspect of virus replication which confers advantages associated with the rapid spread of the virus within an infected host.

Animals↗

Thrombopoietin stimulates megakaryocytopoiesis, myelopoiesis, and expansion of CD34+ progenitor cells from single CD34+Thy-1+Lin- primitive progenitor cells.

Thrombopoietin (TPO) or MpI ligand is known to stimulate megakaryocyte (MK) proliferation and differentiation. To identify the earliest human hematopoietic cells on which TPO acts, we cultured single CD34+Thy-1+Lin- adult bone marrow cells in the presence of TPO alone, with TPO and interleukin-3 (IL-3), or with TPO and c-kit ligand (KL) in the presence of a murine stromal cell line (Sys1). Two distinct growth morphologies were observed: expansion of up to 200 blast cells with subsequent differentiation to large refractile CD41b+ MKs within 3 weeks or expansion to 200-10,000 blast cells, up to 25% of which expressed CD34. The latter blast cell expansions occurred over a 3- to 6-week period without obvious MK differentiation. Morphological staining, analysis of surface marker expression, and colony formation analysis revealed that these populations consisted predominantly of cells committed to the myelomonocytic lineage. The addition of IL-3 to TPO-containing cultures increased the extent of proliferation of single cells, whereas addition of KL increased the percentage of CD34+ cells among the expanding cell populations. Production of multiple colony-forming unit-MK from single CD34+Thy-1+Lin- cells in the presence of TPO was also demonstrated. In limiting dilution assays of CD34+Lin- cells, TPO was found to increase the size and frequency of cobblestone areas at 4 weeks in stromal cultures in the presence of leukemia inhibitory factor and IL-6. In stroma-free cultures, TPO activated a quiescent CD34+Lin-Rhodamine 123lo subset of primitive hematopoietic progenitor cells into cycle, without loss of CD34 expression. These data demonstrate that TPO acts directly on and supports division of cells more primitive than those committed to the MK lineage.

Adult↗

Antitumor effects of an adenovirus expressing antisense insulin-like growth factor I receptor on human lung cancer cell lines.

Insulin-like growth factors (IGFs) are often essential for the maintenance of the malignant phenotype, and in lung cancer the IGF-I receptor (IGF-Ir) is often expressed at high levels. Stable transfection of antisense plasmids expressing the first 300 bp of the IGF-Ir reduces the tumorigenicity of a variety of tumor cell lines and has been reported to induce systemic antitumor effects on established, non-gene-modified tumors in animal model systems. We have constructed an adenovirus expressing an antisense IGF-Ir (Ad-IGF-Ir/as) in an attempt to develop these observations into a clinical therapeutic approach. A single transduction by Ad-IGF-Ir/as (at a multiplicity of infection of 10:1) decreased the IGF-Ir number by about 50% in human lung cancer cell lines NCI H460 and SCC5, as measured by an 125I-labeled IGF-I competitive binding assay. After the transduction of these human lung cancer cell lines by Ad-IGF-Ir/as, the soft agar clonogenicity was reduced by 84%. The i.p. treatment of nude mice bearing established i.p. NCI H460 cells resulted in prolonged survival compared to that of nude mice treated with a reporter virus. These results suggest that Ad-IGF-Ir/as has a therapeutic effect on established human lung cancer xenografts and may represent an effective and practical cancer gene therapy strategy.

Adenoviridae↗

Studies of the c-Harvey-Ras gene in psychiatric disorders.

Hérault et al. (1993) previously reported a significant association between autism and the larger fragments of the c-Harvey-Ras (HRAS) Bam H1 polymorphism. We have sought to verify this finding and determine if there was any evidence for an association with other psychiatric disorders. Because of its greater sensitivity, we have examined the HRAS Msp 1 polymorphism. We found a just significant increase in the prevalence of the > 2.1 kb alleles in 48 subjects with autism versus 50 control subjects. There was no increase in the prevalence of the > 2.1 kb alleles in 164 probands with Tourette's syndrome. Examination of 16 preselected symptom clusters, however, showed a significant trend toward higher scores for obsessive-compulsive and phobic symptoms in > 2.1 kb homozygotes. While this locus requires further study, in conjunction with the results of Hérault et al., the present findings suggest that genetic defects in HRAS, and possibly other components of the G protein secondary messenger system, may play a role in some psychiatric disorders.

Adolescent↗

A eukaryotic translation initiation factor 2-associated 67 kDa glycoprotein partially reverses protein synthesis inhibition by activated double-stranded RNA-dependent protein kinase in intact cells.

A eukaryotic translation initiation factor 2 (eIF-2)-associated 67 kDa glycoprotein (p67) protects the eIF-2 alpha-subunit from inhibitory phosphorylation by eIF-2 kinases, and this promotes protein synthesis in the presence of active eIF-2 alpha kinases in vitro [Ray, M. K., et al. (1992) Proc. Natl. Acad. Sci. U.S.A. 89, 539-543]. We have now examined the effect of overexpression of this cellular eIF-2 kinase inhibitor in an in vivo system using transiently transfected COS-l cells. In this system, coexpression of genes that inhibit PKR activity restores translation of plasmid-derived mRNA. We now report the following. (1) Transient transfection of COS-1 cells with a p67 expression vector increased p67 synthesis by 20-fold over endogenous levels in the isolated subpopulation of transfected cells. (2) Cotransfection of p67 cDNA increased translation of plasmid-derived mRNAs. (3) Overexpression of p67 reduced phosphorylation of coexpressed eIF-2 alpha. (4) p67 synthesis was inhibited by cotransfection with an eIF-2 alpha mutant S51D, a mutant that mimics phosphorylated eIF-2 alpha, indicating that p67 cannot bypass translational inhibition mediated by phosphorylation of the eIF-2 alpha-subunit. These results show that the cellular protein p67 can reverse PKR-mediated translational inhibition in intact cells.

Aminopeptidases↗

Phospholipid transfer protein mediated conversion of high density lipoproteins generates pre beta 1-HDL.

High density lipoproteins (HDL) subclasses can be differentiated by two-dimensional non-denaturing polyacrylamide gradient gel electrophoresis (2D-PAGGE) and subsequent immunoblotting. The quantitatively minor HDL-subclasses pre beta 1-LpA-I and gamma-LpE are initial acceptors of cell-derived cholesterol into the plasma compartment. In this study we analysed the effect of phospholipid transfer protein (PLTP) on the electrophoretic distribution of HDL-subclasses in plasma as well as the ability of plasma, pre beta 1-LpA-I, and gamma-LpE to take up [3H]cholesterol from labeled fibroblasts. Pre beta 1-LpA-I but not gamma-LpE disappeared during a 16 hours incubation in the absence of PLTP. During a one minute incubation pre beta 1-LpA-I of pre-incubated plasma released 75% less [3H]cholesterol from radiolabeled fibroblasts than pre beta 1-LpA-I of control plasma. Pre-incubation of plasma reduced the uptake of [3H]cholesterol by gamma-LpE by 40%. Totally, the cholesterol efflux capacity of plasma decreased by 10% compared to the original sample. The amount of immunodetectable pre beta 1-LpA-I increased when plasma was incubated in the presence of PLTP while the amount of immunodetectable gamma-LpE did not change. After one minute incubation of PLTP-conditioned plasma with [3H]cholesterol-labeled fibroblasts, the amount of radioactive cholesterol taken up by pre beta 1-LpA-I was twice as high as in control plasma whereas the amount of [3H]cholesterol taken up by gamma-LpE remained unchanged. As a net result, treatment with PLTP increased the cholesterol efflux into total plasma by 40%. Together with results of previous studies our data suggest that the conversion of alpha-LpA-I3 into alpha-LpA-I2 by PLTP generates pre beta 1-LpA-I but not gamma-LpE. PLTP helps to enhance the uptake of cell-derived cholesterol by pre beta 1-LpA-I and, thereby, the cholesterol efflux capacity of normal plasma.

Apolipoprotein A-I↗

Biochemical characterization of the human liver cytochrome P450 arachidonic acid epoxygenase pathway.

Human liver microsomal fractions metabolized arachidonic acid in the presence of NADPH yielding epoxyeicosatrienoic acids and their hydration products, dihydroxyeicosatrienoic acids, as the principal reaction products. Inhibition studies using polyclonal antibodies prepared against recombinant CYP2C8, an abundant human liver cytochrome P450 epoxygenase, demonstrated 85-90% inhibition of arachidonic acid epoxide formation. Both epoxyeicosatrienoic acids and dihydroxyeicosatrienoic acids were detected in large amounts in human liver using gas chromatography/mass spectrometry. Chiral analysis of the endogenous liver epoxides demonstrated a preference for the 14(R),15(S)-, 11(R),12(S)-, and 8(S),9(R)-epoxyeicosatrienoic acid enantiomers. Importantly, the chirality of liver epoxyeicosatrienoic acids matched that previously reported for recombinant CYP2C8 (Zeldin et al. (1995) Arch. Biochem. Biophys. 322, 76-86). Incubations of both human liver cytosolic and microsomal fractions with synthetic epoxyeicosatrienoic acids revealed a 10-fold higher rate of dihydroxyeicosatrienoic acid formation with cytosolic relative to microsomal fractions. Recombinant human liver cytosolic epoxide hydrolase rapidly and regioselectively hydrated epoxyeicosatrienoic acids. We conclude, based on these data, that CYP2C8 is one of the primary, constitutive hepatic arachidonic acid epoxygenases responsible for formation of epoxyeicosatrienoic acids and that cytosolic epoxide hydrolase is the principal liver enzyme which forms the dihydroxyeicosatrienoic acids. We speculate that these biologically active eicosanoids may be important in maintaining homeostasis in the liver.

Arachidonic Acid↗

Chromosomal localization of murine and human oligodendrocyte-specific protein genes.

Oligodendrocyte-specific protein (OSP) is a recently described protein present only in myelin of the central nervous system. Several inherited disorders of myelin are caused by mutations in myelin genes but the etiology of many remain unknown. We mapped the location of the mouse OSP gene to the proximal region of chromosome 3 using two sets of multilocus crosses and to human chromosome 3 using somatic cell hybrids. Fine mapping with fluorescence in situ hybridization placed the OSP gene at human chromosome 3q26.2-q26.3. To date, there are no known inherited neurological disorders that localize to these regions.

Animals↗

Polygenic inheritance of Tourette syndrome, stuttering, attention deficit hyperactivity, conduct, and oppositional defiant disorder: the additive and subtractive effect of the three dopaminergic genes--DRD2, D beta H, and DAT1.

Polymorphisms of three different dopaminergic genes, dopamine D2 receptor (DRD2), dopamine beta-hydroxylase (D beta H), and dopamine transporter (DAT1), were examined in Tourette syndrome (TS) probands, their relatives, and controls. Each gene individually showed a significant correlation with various behavioral variables in these subjects. The additive and substractive effects of the three genes were examined by genotyping all three genes in the same set of subjects. For 9 of 20 TS associated comorbid behaviors there was a significant linear association between the degree of loading for markers of three genes and the mean behavior scores. The behavior variables showing the significant associations were, in order attention deficit hyperactivity disorder (ADHD), stuttering oppositional defiant, tics, conduct, obsessive-compulsive, mania, alcohol abuse and general anxiety-behaviors that constitute the most overt clinical aspects of TS. For 16 of the 20 behavior scores there was a linear progressive decrease in the mean score with progressively lesser loading for the three gene markers. These results suggest that TS, ADHD, stuttering oppositional defiant and conduct disorder, and other behaviors associated with TS, are polygenic, due in part to these three dopaminergic genes, and that the genetics of other polygenic psychiatric disorders may be deciphered using this technique.

Adolescent↗

T cell recognition of MHC class II-associated peptides is independent of peptide affinity for MHC and sodium dodecyl sulfate stability of the peptide/MHC complex. Effects of conservative amino acid substitutions at anchor position 1 of influenza matrix protein19-31.

T cells recognize peptide fragments of Ags bound to MHC-encoded molecules. Pockets in the MHC peptide-binding groove accommodate a limited set of amino acid side chains present at anchor positions in peptide; however, the functional significance of accommodation of different side chains at an anchor position in peptide is not clear. A panel of T cell clones was evaluated to test the effect of conservative amino acid substitution at a primary peptide anchor position. Results of T cell stimulation studies were correlated with two well studied characteristics of the peptide/MHC complex, which are the affinity of peptide binding to MHC and the stability of the resulting complex upon PAGE in the presence of SDS. We found that formation of a functional complex required neither high affinity peptide binding nor SDS stability. Furthermore, T cell clones differed in their ability to recognize individual peptide variants, suggesting that some structural aspect of the peptide/MHC complex is influenced by interactions between peptide anchor residues and MHC pockets.

Amino Acid Sequence↗

Childhood lead poisoning in China.

In China, comprehensive epidemiological data relating to the prevalence of childhood lead poisoning are not available. However, existing data suggest that this disease may be widely pervasive as a result of rapid industrialization and the use of leaded gasoline. Seventeen publications have reported elevated blood lead levels in children from different areas of the country. Children residing in industrial and busy traffic areas had average blood lead levels(BPb) of 21.8-67.9 mu g/dl. The percentages of BPb values above 10 mu g/dl, which is the definition of lead poisoning in children, ranged from 64.9% to 99.5%. Even for 'unexposed' children, about 50% of them had BPb values above 10 mu g/dl. Furthermore, several retrospective pilot studies were conducted in Shanghai, Shenyang, Fuzhou and Beijing to evaluate the health effects of lead at current degree of exposure. The link between low-level lead exposure and deficits in IQ, neurobehavioral development and physical growth is remarkably consistent without exception. In summary, the harmful health effects of childhood lead poisoning in limited studies of exposed and 'unexposed' children demonstrate that this totally preventable disease warrants considerable public health attention in China.

Child↗

Molecular cloning and expression of CYP2J2, a human cytochrome P450 arachidonic acid epoxygenase highly expressed in heart.

A cDNA encoding a human cytochrome P450 arachidonic acid epoxygenase was isolated from a human liver cDNA library. Sequence analysis revealed that this 1,876-base pair cDNA contained an open reading frame and encoded a new 502-amino acid protein designated CYP2J2. Blot hybridization analysis of RNA prepared from human tissues revealed that CYP2J2 was highly expressed in the heart. Recombinant CYP2J2 protein was prepared using the baculovirus expression system and purified to near electrophoretic homogeneity. The enzyme metabolized arachidonic acid predominantly via olefin epoxidation to all four regioisomeric cis-epoxyeicosatrienoic acids (catalytic turnover 65 pmol of product formed/nmol of cytochrome P450/min at 30 degrees C). Epoxidation of arachidonic acid by CYP2J2 at the 14,15-olefin was highly enantioselective for (14R, 15S)-epoxyeicosatrienoic acid (76% optical purity). Immunoblotting of microsomal fractions prepared from human tissues using a polyclonal antibody raised against the recombinant hemoprotein confirmed primary expression of CYP2J2 protein in human heart. The in vivo significance of CYP2J2 was suggested by documenting the presence of epoxyeicosatrienoic acids in the human heart using gas chromatography/mass spectroscopy. Importantly, the chirality of CYP2J2 products matched that of the epoxyeicosatrienoic acid enantiomers present, in vivo, in human heart. We propose that CYP2J2 is one of the enzymes responsible for epoxidation of endogenous arachidonic acid pools in human heart and that epoxyeicosatrienoic acids may, therefore, play important functional roles in cardiac physiology.

Amino Acid Sequence↗

Overexpression of both RAR and RXR restores AP-1 repression in ovarian adenocarcinoma cells resistant to retinoic acid-dependent growth inhibition.

Retinoids including retinoic acid (RA) have been demonstrated to be effective growth inhibitors of a number of human cancer cell lines including ovarian adenocarcinoma cells. To begin to determine the mechanism of action by which RA inhibits the growth of ovarian carcinoma cells, we have examined AP-1 activity in two representative cell lines: CaOV-3 a RA-sensitive cell line and SK-OV-3 a RA-resistant cell line. AP-1 activity was found to be inhibited by 50% upon RA treatment of the RA-sensitive cells while there was no change in AP-1 activity following RA treatment of the RA-resistant cells. Maximal inhibition of AP-1 activity could be achieved in the RA-resistant SK-OV-3 cells by overexpression of any one of the three retinoic acid receptor (RAR) subtypes in conjunction with retinoid X receptor (RXR) alpha. This inhibition of AP-1 activity was nearly comparable to that of the RA-sensitive cells. A similar change in AP-1 complex formation in vitro has also been observed. These results suggest that one mechanism by which RA inhibits growth of RA-sensitive ovarian carcinoma cells is by repressing AP-1 activity. Moreover, in the RA-resistant cells the RAR/RXR signalling pathway leading to inhibition of AP-1 activity is impaired however overexpression of one of the RAR subtypes along with RXR alpha is sufficient to restore this pathway.

Adenocarcinoma↗

Overexpression of Mxi1 inhibits the induction of the human ornithine decarboxylase gene by the Myc/Max protein complex.

We have previously shown that the Myc/Max protein complex plays a role in the growth-associated expression of the human ornithine decarboxylase gene. Mxi1 and Mad, novel Max-associated proteins have been identified and shown to form heterodimers with Max which bind efficiently to the Myc/Max consensus recognition sequence, CACGTG, in vitro. However, formation of Max/Mxi1 or Max/Mad heterodimers results in a reduction in Myc/Max dependent transcriptional activation of reporter plasmid constructs containing the consensus element. In light of the evidence that ODC is transcriptionally regulated in vitro and in vivo by the Myc/Max protein complex and the potential role of Mxi1 and Mad as antagonists of Myc transactivation activity, we set out to determine if one of these Max associated proteins, Mxi1, could affect the regulation of ODC expression by Myc/Max and if this regulation was correlated to growth status. Our results show that overexpression of Mxi1 does in fact inhibit ODC gene expression in a dose-dependent manner both in vivo and in vitro. In addition, evidence is presented which shows that levels of Mxi1 are up-regulated during long term quiescence and down-regulated following growth stimulation by serum. These results suggest that alterations in the levels of Max-associated proteins such as Mxi1 can modulate critical levels of functional Myc/Max protein complexes. This can alter transcriptional transactivation of Myc-regulated targets and as a consequence affect levels of genes essential for initiation and/or maintenance of growth.

Base Sequence↗

Optimization of live oral Salmonella-HIV-1 vaccine vectors for the induction of HIV-specific mucosal and systemic immune responses.

Recent evidence suggests that live oral Salmonella-HIV vaccine vectors have the potential to elicit HIV-specific T cell-mediated immunity in both the mucosal and systemic compartments. We are using the mouse-typhoid model to identify Salmonella::HIV vaccine vector constructs that elicit HIV-specific mucosal and systemic immune responses. Oral immunization of mice with a Salmonella strain that expresses recombinant gp120 (rgp120) in the cytoplasm of the vector elicits a modest gp120-specific T cell proliferation response in the spleen. However, such Salmonella constructs did not stimulate the development of gp120-specific serum IgG or cytotoxic T lymphocytes (CTLs). Interestingly, the majority of cytoplasmically-expressed rgp120 forms inclusion bodies in Salmonella. We believe that in this form rgp120 is highly susceptible to protease degradation by the vector. As such, cytoplasmic rgp120 may not persist in the host after vaccination, resulting in the modest immunogenicity of rgp120 in these constructs. To circumvent this problem we constructed Salmonella strains that express rgp120 on the surface of the vector. Preliminary data suggest that surface-expressed rgp120 is significantly more immunogenic in both the mucosal and systemic compartments than cytoplasmic rgp120. These results, therefore, support the proposal that Salmonella vectors will be a safe and inexpensive means for delivery of HIV antigens to, and the elicitation of HIV-specific T cells in, the mucosal and systemic compartments.

Administration, Oral↗