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Biomedical subjects

B S Weeks

Publications and source records attributed to B S Weeks.

At least 19 recordsLinked to original sources

Morphine inhibits indolactam V-induced U937 cell adhesion and gelatinase secretion.

We demonstrate that indolactam V, a non-phorbol protein kinase C activator, promotes U937 cell attachment to fibronectin, type IV collagen and laminin. In the absence of indolactam V, 2-4% of U937 cells attach to all test substrates, however, in the presence of 100 nM indolactam V, 25, 16 and 11% of U937 cells attach to fibronectin, type IV collagen and laminin, respectively. When added concomitantly, 90 microM H-7, a protein kinase C inhibitor, reduces indolactam V-induced U937 cell adhesion to fibronectin by 91%. Monoclonal antibodies directed against both the beta1 and alpha 5 integrin subunits inhibit indolactam V-induced U937 cell adhesion to fibronectin by 62 and 52%, respectively. Indolactam V also promotes homotypic aggregation in U937 cells, which is blocked with either anti-ICAM or anti-LFA-1 antibodies. In addition, indolactam V promotes U937 cell secretion of a 92 kDa gelatinase as demonstrated by zymography. In the presence of low levels of morphine (10 nM-1.0 microM), the U937 cell attachment to matrix proteins was not significantly affected. However, in the presence of 10 microM morphine, the indolactam V treated cells exhibit a 71-74% reduction in cell adhesion to the matrix proteins. Further, 10 microM morphine also blocks indolactam V-induced homotypic aggregation and gelatinase secretion. The inhibitory effect of morphine on cell-matrix adhesion and gelatinase secretion was not inhibited by the opiate receptor antagonist naloxone (1 microM). While 10 microM naloxone did partially counteract the effect of 10 microM morphine on U937 cell attachment, this effect was likely non-specific since 10 microM naloxone alone increased cell adhesion. Supporting this conclusion, PCR analysis revealed that U937 cells do not express the mu high affinity morphine receptor. Also, indolactam V did not induce mu receptor expression, suggesting that morphine acts on U937 cells in a non-specific fashion.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

HIV gp120 and morphine alter mu opiate receptor expression in human vascular endothelium.

We find that chronic exposure of human saphenous vein, atria and internal thoracic artery endothelium to the human immunodeficiency virus surface glycoprotein gp120, results in an increase in endothelial mu opioid receptor expression (52%). gp120 acts, in this regard, as a proinflammatory cytokine (e.g. interleukin-1-alpha) by increasing endothelial mu opioid receptor expression. In contrast, morphine decreases mu opioid receptor expression by 90% in a dose dependent fashion. Pretreatment of these tissues with the respective antagonists e.g., naloxone and anti-gp120 blocks the opiate decrease and increase gp120 induced increase in mu expression, respectively. Further, pretreatment of these endothelia with morphine inhibits gp120-stimulated mu transcript expression. Therefore, the immune down-regulating action of morphine may prevent viral replication because this process requires immune activation that can, in part, be provided for by gp120 proinflammatory actions.

Analgesics, Opioid↗

Morphine reduces herpes simplex virus-1 pathogenesis in the murine flank.

Here we investigate the effect of morphine on herpes simplex virus-1 (HSV-1) pathogenesis using a murine flank scarification model. Murine flank scarification with HSV-1 results in primary lesions at the site of inoculation within three days and lesions at secondary sites within four days. The lesions are scored based on lesion size. Applying 0.1 mM morphine to the skin one-day post inoculation tested the effect of morphine on the formation of the herpes lesion. On days three through five, mice treated with morphine developed lesions with scores half of that observed in untreated animals, however, skin viral titers on these days were equivalent. Further, 1.0 microM morphine did not effect the replication rate of HSV-1 in Vero cells. Taken together, these data suggest the morphine reduced HSV-1 pathogenesis by modifying the host response to HSV-1 infection and not by reducing viral replication rates.

Animals↗

Nitric oxide mediates laminin-induced neurite outgrowth in PC12 cells.

Laminin is a potent stimulator of neurite outgrowth in a variety of primary neurons and neuronal cell lines. Here, we investigate the role of nitric oxide in the signaling mechanism of laminin-mediated neurite outgrowth in the PC12 cell line. Within 8 s of exposure to laminin, PC12 cells produce nitric oxide. Peak laminin-induced nitric oxide levels reach 8 nM within 12 s of exposure to laminin and constitutive nitric oxide production is sustained for 1 min. A neurite outgrowth promoting synthetic peptide (AG73), derived from the laminin-1-alpha globular domain, also stimulated nitric oxide release. The nitric oxide synthase inhibitor, 1-NAME, prevents the formation of nitric oxide and here, 1-NAME inhibited both laminin-mediated and AG73-mediated neurite outgrowth by 88 and 95%, respectively. In contrast, C16, a synthetic peptide derived from the laminin-1-gamma chain, is shown here to promote PC12 cell attachment, but not neurite outgrowth. Interestingly, the C16 peptide did not activate nitric oxide release, suggesting that laminin-induced nitric oxide release in PC12 cells is associated only with neurite outgrowth promoting laminin domains and signals. In addition, the data here show that the nitric oxide released by PC12 cells in response to laminin is required as a part of the mechanism of laminin-mediated neurite outgrowth.

Animals↗

Laminin-1 activates Cdc42 in the mechanism of laminin-1-mediated neurite outgrowth.

Here, we investigated the role of the small Rho GTPases Rac, Cdc42, and Rho in the mechanism of laminin-1-mediated neurite outgrowth in PC12 cells. PC12 cells were transfected with plasmids expressing wild-type and dominant-negative mutants of Rac (RacN17), Cdc42 (Cdc42N17), or Rho (RhoN19). Over 90% of the dominant-negative Rho- and Rac-transfected cells extended neurites when plated on laminin-1; however, none of the PC12 cells transfected with the dominant-negative Cdc42 mutant extended neurites. In cells cotransfected with plasmids expressing c-Jun N-terminal kinase and wild-type Cdc42, laminin-1 treatment stimulated detectable levels of c-Jun phosphorylation. Further, cotransfection with c-Jun N-terminal kinase and the dominant-negative Cdc42 mutant blocked laminin-1-mediated c-Jun phosphorylation. Transfection with either wild-type Rac or the dominant-negative Rac did not effect c-Jun phosphorylation. These data demonstrate that Cdc42 is activated by laminin-1 and that Cdc42 activation is required in the mechanism of laminin-1-mediated neurite outgrowth.

Animals↗

Identification of morphine in the adrenal medullary chromaffin PC-12 cell line.

Morphine was identified in the adrenal medulla chromaffin PC-12 cell line by reversed-phase HPLC, following liquid and solid extraction. The morphine corresponding HPLC fractions (1.746+/-0.615 ng of morphine/million cells) were further analyzed by gas chromatography-mass spectrometry and found to be identical to synthetic morphine. Furthermore, using primers derived from the human neuronal mu 1 opiate receptor, we used RT-PCR to detect expression of mu transcripts from this cell line. The transcript was absent. The study conclusively proves morphine, but not a mu opiate receptor, is constitutively expressed in the adrenal medulla chromaffin PC-12 cell line.

Adrenal Gland Neoplasms↗

Tat mediates apoptosis in vivo in the rat central nervous system.

The HIV-1 transactivator of transcription, Tat, mediates apoptosis in neurons and may cause AIDS-associated neurologic disorders, which include dementia and loss of motor control. Here we investigate the ability of Tat to stimulate apoptosis in the rat central nervous system in vivo. Using the TUNEL assay, treatment of rat pheochromocytoma (PC12) cells with 1.0 microgram/ml of Tat for 24 h was found to stimulate apoptosis. Further, electrophoresis of DNA from Tat-treated PC12 cells demonstrated fragmentation. To investigate Tat mediated apoptosis in vivo, 20 microgram of Tat was infused into the striatum of Sprague-Dawley rats. Histochemical analysis (TUNEL) of the Tat-infused area demonstrated apoptosis. Further, these rats demonstrated postural deviation ipsilateral to the infusion. These data demonstrate that Tat stimulates apoptosis in vivo and causes neurologic dysfunction in the intact animal.

Animals↗

Herpes simplex virus type-1 and -2 pathogenesis is restricted by the epidermal basement membrane.

Murine flank scarification with HSV-1 and -2 results in primary lesions at the site of inoculation within three days and lesions at secondary sites within four days. The severity of the infection can be given a numerical value or "score" which is derived from the number and size of these lesions. Using this model, we investigated the role of the epidermal basement membrane in HSV pathogenesis. We exposed murine epidermis to 5 x 10(4) plaque forming units of HSV-1 and -2, which by day 8 produced inoculation site (primary site) disease scores of 27 and 12.4 respectively, and secondary site disease scores of 29 and 30 respectively. In contrast, intradermal injection of HSV below the epidermal basement membrane did not cause disease. To determine if the basement membrane restricts HSV spread in vitro, Vero cells were cultured in the lower well of a dual well system. The upper well was separated from the lower well by a filter coated with the artificial basement membrane, matrigel. Addition of virus to the upper well failed to result in either viral accumulation in the lower well or infection of the cells in the lower well. These data suggest that the basement membrane is a barrier to the passage and spread of HSV.

Animals↗

Laminin stimulates protein tyrosine dephosphorylation in PC12 cells.

Laminin stimulates neurite outgrowth in rat pheochromocytoma cells (PC12 cells). Here, we investigated laminin signal transduction mechanisms by adding the tyrosine kinase/phosphatase modulators, genistein, quercetin, aurin tricarboxylic acid (ATA), and vanadate to PC12 cells. At 10 microM both genistein and quercetin enhanced laminin-mediated neurite outgrowth by 1.7- and 2.3-fold, respectively, while at 10 microM, ATA inhibited laminin-mediated neurite outgrowth by 92%. Vanadate inhibited neurite outgrowth by 63% at 10 microM. Immunoblot analysis revealed four proteins of approximately 240, 22, 110, and 35 kDa, which were dephosphorylated on tyrosine residues in laminin-treated PC12 cells, but not in NIH 3T3 cells. These results demonstrate that laminin-mediated neurite outgrowth involves protein tyrosine dephosphorylation and suggests that this mechanism may have specificity to neuronal cells.

Animals↗

The role of protein kinase C in laminin-mediated neurite outgrowth.

Laminin is a potent stimulator of neurite outgrowth in rat pheochromocytoma (PC12) cells. Here, we investigated the role of protein kinase C (PKC) in the mechanism of laminin-mediated neurite outgrowth in PC12 cells. Phorbol ester activators of PKC have been shown to have divergent effects on laminin-mediated neurite outgrowth. Therefore, we tested the effect of the non-phorbol PKC activator, indolactam V. At 1.0 microM indolactam V inhibited laminin-mediated neurite outgrowth by 85%. Further, the PKC inhibitor H7 blocked the inhibitory effect of indolactam V on laminin-mediated neurite outgrowth. Direct measurement of protein kinase C activity in the soluble (cytosolic) and particulate (membrane) fractions of PC12 cells showed that laminin failed to alter protein kinase C activity. These data demonstrate that PKC activation inhibits laminin-mediated neurite outgrowth and that laminin does not activate PKC in PC12 cells.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Laminin-1 and the RKRLQVQLSIRT laminin-1 alpha1 globular domain peptide stimulate matrix metalloproteinase secretion by PC12 cells.

Here we have investigated the ability of laminin-1 and specific laminin-1-derived synthetic peptides to stimulate neuronal cell matrix metalloproteinase secretion. Zymographic analysis of conditioned media from laminin-1-treated PC12 and NG108-15 cells revealed a 72-kDa matrix metalloproteinase which was not secreted by untreated cells. Laminin-1 alpha1 chain-derived synthetic peptides, AASIKVAVSADR (LAM-L) and RKRLQVQLSIRT (AG-73), also stimulated PC12 cell secretion of a 72-kDa matrix metalloproteinase. We further investigated the structural requirements of AG-73 for cell attachment, neurite outgrowth, and matrix metalloproteinase secretion using a series of AG-73 analogs that had single amino acids substituted with alanine. At the substrate levels tested, the AG-73 peptide promoted the adhesion of 67% of the PC12 cells and neurite outgrowth in 71% of the PC12 cells. Substitutions in any one of the amino acids within the central LQVQ sequence resulted in a large reduction in cell attachment whereas substitution in the carboxyl terminal proximal amino acids L, S, and R had little effect on attachment. Alanine substitution of any of the amino terminal proximal LQV amino acids and the carboxyl terminal L, I, and R residues resulted in a 65-91% reduction in neurite outgrowth. These data demonstrate that the sequence requirements for cell attachment and neurite outgrowth were not necessarily coupled but that the sequence requirements for neurite outgrowth and matrix metalloproteinase secretion were identical. We conclude that laminin-1 is able to stimulate neuronal cells to secrete a matrix metalloproteinase. Further, this study identifies the LQVXLXIR laminin-1 alpha1 globular domain peptide to be capable of stimulating both neurite outgrowth and matrix metalloproteinase secretion.

Animals↗

In vivo immune evasion mediated by the herpes simplex virus type 1 immunoglobulin G Fc receptor.

Herpes simplex virus (HSV) glycoproteins gE and gI form an immunoglobulin G (IgG) Fc receptor (FcgammaR) that binds the Fc domain of human anti-HSV IgG and inhibits Fc-mediated immune functions in vitro. gE or gI deletion mutant viruses are avirulent, probably because gE and gI are also involved in cell-to-cell spread. In an effort to modify FcgammaR activity without affecting other gE functions, we constructed a mutant virus, NS-gE339, that has four amino acids inserted into gE within the domain homologous to mammalian IgG FcgammaRs. NS-gE339 expresses gE and gI, is FcgammaR-, and does not participate in antibody bipolar bridging since it does not block activities mediated by the Fc domain of anti-HSV IgG. In vivo studies were performed with mice because the HSV-1 FcgammaR does not bind murine IgG; therefore, the absence of an FcgammaR should not affect virulence in mice. NS-gE339 causes disease at the skin inoculation site comparably to wild-type and rescued viruses, indicating that the FcgammaR- mutant virus is pathogenic in animals. Mice were passively immunized with human anti-HSV IgG and then infected with mutant or wild-type virus. We postulated that the HSV-1 FcgammaR should protect wild-type virus from antibody attack. Human anti-HSV IgG greatly reduced viral titers and disease severity in NS-gE339-infected animals while having little effect on wild-type or rescued virus. We conclude that the HSV-1 FcgammaR enables the virus to evade antibody attack in vivo, which likely explains why antibodies are relatively ineffective against HSV infection.

Animals↗

The role of HIV-1 activated leukocyte adhesion mechanisms and matrix metalloproteinase secretion in AIDS pathogenesis (Review).

The following is a review of an emerging topic in the literature which has led to new hypotheses regarding the mechanisms of pathogenesis of the various tissue specific AIDS associated syndromes. The fundamental hypothesis in this review proposes that HIV-1 is able to increase lymphocyte and monocyte localization in tissues where released HIV-1 proteins cause local tissue damage leading to any one of the various AIDS associated syndromes. It is also hypothesized here that syndromes associated with other lymphotrophic viruses result from the ability of these viruses to direct leukocyte extravasation of blood vessel walls and to initiate tissue specific pathogenesis. Further, it is suggested here that new concepts and strategies for delivering gene therapy to specific tissues can be derived from our understanding of the mechanisms through which lymphotrophic viruses localize in specific tissues. HIV-1 infection of lymphocytes and monocytes leads to increased adhesion of these cells to vascular endothelium and extracellular matrix molecules. In addition, HIV-1 infection of various leukocytes leads to increased secretion of extracellular matrix degrading matrix metalloproteinases. Increases in leukocyte adhesion and matrix metalloproteinase secretion are associated with the normal mechanisms through which leukocytes localize in tissues during inflammation. The ability of HIV-1 to activate leukocyte adhesion and matrix metalloproteinase secretion suggests that HIV-1 has evolved a way to take advantage of leukocyte inflammatory mechanisms in order to exit the blood stream and gain access to body tissues. The ability of HIV-1 to use infected cells to localize in various tissues may lead to the establishment of HIV-1 reservoirs in tissues. Such viral reservoirs may cause the various tissue specific AIDS associated syndromes. AIDS patients have been found to have elevated adhesion molecules (integrins, and cell adhesion molecules or CAMs) on their peripheral blood lymphocytes (PBLs). While there is little clinical evidence that the tissue localization of HIV-1 infected leukocytes are the cause of the HIV-1 related syndromes, studies in vitro and with animal models have shown that the HIV-1 gene products Tat, Rev and gp120 are potent neurotoxins. It has also been shown that Tat can contribute to the growth of cells from Kaposi's sarcoma lesions. Further, HIV-1 infected cells have been shown to secrete cytotoxic levels of a variety of growth factors and small molecules. Thus, it is likely that the localization of HIV-1 infected cells in specific tissues could contribute to the HIV-1 associated syndromes such as AIDS dementia, HIV-1 related interstitial lung disease, HIV-1 associated nephropathy, the HIV-1 wasting syndrome and perhaps AIDS associated Kaposi's sarcoma and hyperproliferative skin disorders. This review will examine studies in the literature which demonstrate that HIV-1 infection increases leukocyte adhesion and matrix metalloproteinase secretion. Clinical reports of AIDS patient's leukocyte integrin levels will also be reviewed and evidence that tissue localized HIV-1 infected cells could contribute to a variety of HIV-1 associated syndromes will be presented.

Acquired Immunodeficiency Syndrome↗

The herpes simplex virus-1 glycoprotein E (gE) mediates IgG binding and cell-to-cell spread through distinct gE domains.

Herpes simplex virus-1 (HSV-1) glycoprotein E (gE) is a multifunctional protein capable of both binding the Fc portion of IgG and mediating cell-to-cell spread of HSV-1. Here we report that the domain on gE involved in IgG binding is distinct from the domain involved in mediating cell-to-cell spread. To do this we have used five mutants of the HSV-1 strain NS: NS-gE(null), a gE deletion virus; rNS-gE(null), a gE rescued virus; NS-gE339, a gE mutant virus with a four amino acid insert at position 339; rNS-gE339, a gE rescue of NS-gE339; and NS-gE406, a gE mutant virus with the same four amino acids inserted at position 406. Using IgG coated sheep red blood cells in rosetting assays, we show that the NS-gE339 does not bind IgG, yet retains the ability to mediate normal cell-to-cell spread. These results demonstrate that the gE domain involved in IgG binding differs from the domain involved in cell-to-cell spread.

Animals↗

AIDS-associated Kaposi's sarcoma cells secrete a neurotrophic growth factor(s).

Here we treat neuronal cells with AIDS-Kaposi's sarcoma cell conditioned medium (A-KSCM) in order to determine if AIDS-Kaposi's sarcoma (A-KS) cells secrete neurotrophic factors. PC12 and NG108-15 cells were differentiated and allowed to form neuronal processes. Under these conditions and in the presence of A-KSCM, PC12 cells exhibited more than a twofold increase in the number of branches per process and a 40% increase in the number of processes per cell. For NG108-15 cells, A-KSCM treatment resulted in a three-fold increase in the number of branches per process and nearly a twofold increase in the number of processes per cell. A-KS cells secrete at least seven known growth factors; however, when tested, none of these growth factors mimicked the effect of A-KSCM on neuronal cell processes. Therefore A-KS cells secrete a neurotrophic factor(s) which remains to be identified and may play a critical role in the progression of A-KS.

AIDS-Related Opportunistic Infections↗

Laminin reduces HSV-1 spread from cell to cell in human keratinocyte cultures.

Herpes simplex virus-1 (HSV-1) infects epidermal cells where it replicates and spreads from cell to cell. While some of the viral factors responsible for cell-to-cell spread are known, the host cell molecules and structures which are utilized by HSV-1 during spread are not well studied. Here we report that a laminin substrate reduced the ability of HSV-1 to spread from cell to cell in cultures of a human keratinocyte cell line (HaCaT). Laminin did not reduce spread of the virus by decreasing the viral replication rate. However, laminin did stimulate the formation of tight junctions between HaCaT cells, suggesting that tight junctions can affect cell-to-cell spread of HSV-1. Since laminin is an abundant component of the basement membrane in vivo, culturing cells on laminin may provide an assay which more accurately reflects the rate and mechanism of HSV-1 cell-to-cell spread in vivo.

Animals↗

bFGF stimulates U937 cell adhesion to fibronectin and secretion of gelatinase B.

U937 cells are an immature monocytic cell line which has been used to study monocyte differentiation. For example, phorbol ester differentiation of U937 cells results in both an increase in adhesion to fibronectin through alpha 5 beta 1 integrin and the ability to degrade extracellular matrix (ECM) proteins through the secretion of gelatinase B (1, 2). The ability of monocytes to adhere to and degrade ECM molecules is fundamental to their localization at sites of inflammation and tissue damage. Here we find that bFGF treatment of U937 cells results in a six-fold increased adhesion to fibronectin. Further, monoclonal antibodies to alpha 5 or beta 1 integrin block the bFGF induced adhesion to fibronectin. bFGF also stimulated U937 cell secretion of a 92 kDa gelatinase which was identified by immunoblot to be gelatinase B. These data are the first to suggest a role for bFGF as an immunomodulatory factor during the early stages of inflammation.

Antibodies↗

Phosphatase inhibitors promote ICAM-1 and LFA-1 mediated homotypic aggregation of Jurkat and U937 cells.

Here we investigated the role of cellular phosphatases in activation of homotypic aggregation in leukocytes by adding the phosphatase inhibitors okadaic acid (OA) and calyculin A (CA) to cultures of the human monocytic U937 cell line and the human T-lymphocytic Jurkat cell line. We found that OA produces a 120-fold increase of homotypic aggregation with Jurkat cells and a 200-fold increase with U937 cells. Calyculin A increased aggregation of Jurkat cells 10-fold and U937 cells 88-fold. Monoclonal antibodies to LFA-1 completely inhibited the OA and CA induced aggregation in both cell lines, whereas the monoclonal antibody to ICAM-1 only inhibited U937 cell aggregation. These data suggest that phosphatase activity is important in the regulation of ICAM-1 and LFA-1 mediated homotypic aggregation in leukocytes.

Cell Aggregation↗