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C F Ebenbichler

Publications and source records attributed to C F Ebenbichler.

16 recordsLinked to original sources

Leptin receptor in human term placenta: in situ hybridization and immunohistochemical localization.

In the present study, we investigated the expression and localization of leptin receptors in human term placentae. On human term placenta tissue slices, digoxigenin-UTP labelled RNA-probe detected the long form of the leptin receptor ObR(L)mRNA in syncytiotrophoblasts of the villi, whereas the haematological subtype of the leptin receptor ObR/B219.1 was detected in blood cells of the intervillous space and fetal vessels. Immunohistochemistry, with two polyclonal antibodies to the N-terminus recognizing ObR(L)and ObR(S)of the leptin receptors and one to the C-terminus recognizing the long form of the leptin receptor ObR(L), localized leptin receptor protein at the apical membrane of the syncytiotrophoblasts. Our results show that the long form of the leptin receptor ObR(L)is expressed in human term placentae. We localized the long form of leptin receptor mRNA to the cytoplasm of syncytiotrophoblasts and leptin receptor proteins in human term placentae to the apical membrane of syncytiotrophoblasts. We conclude that in term placentae, leptin could mediate a growth promoting effect in the fetoplacental unit through the long form of the leptin receptor localized in the syncytiotrophoblasts. In contrast, the haematological subtype of the leptin receptor is not expressed in placental cells, but solely by blood cells in the intervillous space and fetal vessels.

Carrier Proteins

[Leptin--an interim evaluation].

The discovery of leptin, the product of the obese (ob)-gene, has broadened the horizons of research on energy balance. This hormone, produced and secreted by adipose tissue and some placental cells, finds its way to the hypothalamus, where it binds to the leptin receptors and signals satiety through the neuroendocrine axis. The fact that adipose tissue is not merely a storage depot, but also an important endocrine tissue, has revived the interest in the "lipostatic" theory of body fat regulation and has initiated many research efforts in the field of obesity, anorexia nervosa, bulimia, reproduction and haematology.

Adipose Tissue

The human immunodeficiency virus type 1 transmembrane gp41 protein is a calcium-binding protein and interacts with the putative second-receptor molecules in a calcium-dependent manner.

Fusion is a crucial event in the life cycle of the human immunodeficiency virus (HIV); is is initiated by the high-affinity binding between gp120, the external surface glycoprotein of HIV-1, and the differentiation antigen CD4 and finally results in the insertion of the hydrophobic amino terminus of the gp41 envelope glycoprotein into the plasma membrane of the target cell. Recent results suggest that this process is dependent upon calcium ions, but the mechanism or the proteins involved are not understood. Computer-assisted sequence analysis revealed a putative calcium-binding site within the extracellular part of gp41 that was highly reminiscent of the calcium-binding EF-hand structure. To test this hypothesis, calcium-binding experiments were performed. Binding of a recombinant soluble form of the transmembrane protein (rsgp41) to its putative second-receptor molecules in equilibrium was dependent upon calcium. The affinity was not influenced by calcium, but the maximum binding was increased in a dose-dependent manner. Radioactive calcium bound to rsgp41 covalently attached to Sepharose but not to bovine serum albumin. Binding was inhibited by the addition of nonradioactive calcium, indicating that binding was specific. Neither magnesium nor manganese inhibited the binding of labeled calcium to rsgp41. Binding was dependent on the oxidative state of the rsgp41 molecule, suggesting the functional importance of the correctly folded structure of the rsgp41 protein. In this report, we demonstrate that the HIV-1 transmembrane protein gp41 is a calcium-binding protein and interacts with the putative second-receptor molecules in a calcium-dependent manner.

Amino Acid Sequence

HIV-1 rsgp41 depends on calcium for binding of human c1q but not for binding of gp120.

Human immunodeficiency virus type 1 activates the complement cascade via the classical pathway by direct binding of C1q through specific sites in the TM surface protein, gp41. In this paper we investigated the divalent cation dependence of the interaction between HIV-1 gp41 and C1q or gp120. A solid phase radioimmunoassay was used to investigate the interaction between a recombinant soluble form of HIV-1 gp41 (rsgp41) and C1q and an enzyme linked immunoassay was used to investigate the interaction between rsgp41 and gp120. The interaction between C1q and rsgp41, but not between C1q and immune complexes, was dependent upon the presence of calcium. Calcium could not be replaced by larger cations such as strontium, barium, lead or smaller ions such as magnesium and manganese. Zinc increased binding to 22% of binding achieved with calcium. The interaction between rsgp41 and gp120 was not dependent upon the presence of divalent ions. Thus, calcium is required for the interaction between rsgp41 and C1q, whereas the interaction between rsgp41 and gp120 is independent of divalent cations.

Calcium

Post-prandial lipaemia.

Post-prandial lipaemia represents the state of absorption during which TG metabolic capacity is under challenge. Low TG metabolic capacity imparts the risk of development of atherosclerosis. TG-intolerance has been shown to be an independent risk factor for CAD and impaired TG metabolic capacity could underlie a common high risk lipoprotein constellation of low HDL cholesterol and small sized HDL and LDL. Magnitude and duration of post-prandial lipaemia determine how much cholesterol is diverted from LDL and HDL into TG-rich lipoproteins through which it causes atherosclerosis. Potential means of intervention are improvement of TG metabolic capacity by reducing obesity, prescription of aerobic exercise, reduction of oxidizability of post-prandial lipoproteins by antioxidants and TG-lowering drugs.

Arteriosclerosis

Postprandial state and atherosclerosis.

Accumulating evidence suggests that triglyceride-rich lipoproteins are an independent risk factor for atherosclerosis. This epidemiological evidence first emerged as a result of studying postprandial lipaemia that characterized the metabolic capacity of triglycerides in the postabsorptive state, that is, under challenge. Studies of postprandial lipaemia were helpful to explain several effects of triglyceride-rich lipoproteins on cholesteryl-ester-rich lipoproteins. From these studies it became apparent that peculiarities of cholesteryl-ester-rich lipoproteins, such as small LDL and small HDL, which have been associated with risk for atherosclerosis, were caused by impaired triglyceride metabolism.

Arteries

HIV and complement: role of the complement system in HIV infection.

HIV, in contrast to animal retroviruses, is not lysed by human serum but nevertheless the virus as well as virus-infected cells activate the complement system efficiently. HIV activates the classical pathway by binding C1q to the transmembrane protein gp41. On the surface of HIV-infected cells, both the alternative and the classical pathway are activated. Complement-treated HIV has an enhanced ability to infect cells carrying receptors for C3 fragments. By this mechanism complement can target the virus to certain cells, e.g. follicular dendritic cells. HIV-infected complement-coated cells can interact with complement receptor carrying cells and thereby spread the infection or cause the destruction of the infected cells. Due to direct or indirect effects of HIV the complement system is in an activated state and the cellular expression of complement receptors as well as regulatory molecules is modified in the blood of HIV-infected patients.

Animals

Further characterization of the interaction between the C1q subcomponent of human C1 and the transmembrane envelope glycoprotein gp41 of HIV-1.

Previous studies have provided evidence for activation of the human C1 complex by HIV-1, resulting from direct interaction between C1q and the external portion of the viral transmembrane envelope protein, rsgp41. The present study was undertaken to locate more precisely, within C1q and rsgp41, the sites involved in the C1/HIV-1 interaction. Using a solid phase binding assay, we showed that 125I-labeled C1q binding to rsgp41 was dose dependent, saturable, and comparable with binding of C1q to IgG-OVA immune complexes. The globular and, to a lesser extent, the collagen-like regions of C1q both bound to rsgp41. In contrast, the globular region of C1q inhibited the C1q/rsgp41 interaction, whereas the collagen-like region of C1q did not. A series of peptides covering the putative C1q-binding site on gp41 (positions 590-613 of gp160) were synthesized and used as competitors in the C1q-rsgp41-binding assay. Peptide 601-613 (GIWGCSGKLICT) inhibited C1q binding the most efficiently, with 50% inhibition at a concentration of 100 microM. This peptide also inhibited binding of C1q to rsgp36, the protein of HIV-2 homologous to rsgp41. The inhibitory effect of this peptide was dependent in part on the presence of the S-S bridge normally connecting Cys 605 to Cys 611 because reduction of this bond significantly reduced its efficiency. These data suggest that the C1q/HIV-1 interaction involves a site on C1q located within the globular regions, and a major site located within the immunodominant domain of HIV-1, which shares homology with the corresponding region of HIV-2.

Amino Acid Sequence

Expression of complement receptor 2 (CR2) on HTLV-1-infected lymphocytes and transformed cell lines.

The expression of complement receptor 2 (CR2) has been demonstrated in established HTLV-1-transformed cell lines and in 12 studied de novo infected peripheral blood lymphocytes cultures, using 2 HTLV-1 sources. The simultaneous detection of CR2 and HTLV-1 antigens in both co-cultivated and supernatant-infected peripheral blood lymphocytes suggest that the increased CR2 expression is in tandem with the increasing HTLV-1 antigen expression. CR2 up-regulation seen during polyclonal activation is presumably in response to a viral protein, although a cellular factor has not been ruled out. Increasing CR2 expression during early infection suggests its possible involvement in selection or development of subsequent transformation events. Variable levels of CR2 in immortalized cell lines argue against its obligate expression of function in the maintenance of the transformed state. The expression of CR2 in cellular activation of T cells may be stage restricted. This study also expands the cellular distribution for CR2.

Cell Line

HIV and human complement: mechanisms of interaction and biological implication.

Human complement, although not lytic for HIV-1, interacts with the virus and is closely involved in the infectious process. It enhances infection in the absence of antibody, and turns neutralizing antibodies into agents which increase viral infectivity. In this review M.P. Dierich et al. summarize available information and discuss possible biological implications.

Animals

Cell surface proteins binding to recombinant soluble HIV-1 and HIV-2 transmembrane proteins.

OBJECTIVE: To further characterize cell surface proteins binding to recombinant soluble (rs) forms of the transmembrane glycoproteins gp41 of HIV-1 (rsgp41) and gp36 of HIV-2 (rsgp36). METHODS: Various human and murine cell lines of different lineages were surface-labelled with 125I. rsgp41 and rsgp36 were bound to CnBr-Sepharose and used as an affinity matrix for the surface-labelled cell lysates. The bound cell surface proteins were separated on sodium dodecyl sulphate polyacrylamide gel electrophoresis under reducing conditions. A rabbit serum was produced against one of the cell surface proteins and flow cytometry used to compare the results with those obtained from affinity chromatography. RESULTS: We have confirmed and extended the results obtained by Qureshi et al. [1]. In addition to the 44kD protein, we identified cell surface proteins with molecular weights of 98 and 106 kD binding with high affinity to both rsgp41 and rsgp36. We have demonstrated differences between human and murine cell lines in the expression of the cell surface proteins that interact with rsgp41 and rsgp36. Furthermore, a correlation between the level of rsgp41 and rsgp36 binding proteins, detected either by affinity chromatography or by reactivity with an antiserum directed against one of the cell surface binding components was shown. CONCLUSIONS: Three cell surface proteins, with molecular weights of 44, 98 and 106 kD, bind with high affinity to rs forms of gp41 and gp36. Their expression decreases from a T-lymphoid cell line, to a monoblastoid cell line, to a cell line representing mature monocytes. Human T-cell lymphotropic virus-infected cell lines show a predominance of the 44 kD protein. There are species-specific differences, in that murine cell lines lack the 44 kD protein.

Animals

Interaction of C1 with HIV-1.

In contrast to animal retroviruses such as murine leukemia virus, HIV-1 is not lysed by human complement. Nevertheless, HIV-1 activates complement via the classical pathway independently of antibody. Evidence is provided for activation of the reconstituted C1 complex by the virus, resulting from direct interaction between C1q and the external part of the viral transmembrane envelope protein (sgp41). Using C1q fragments and synthetic peptides covering the putative interaction regions in C1q and sgp41, we obtain evidence that the C1q/HIV-1 interaction involves: A site on C1q that appears to be located in the intermediary region between the collagen-like and the globular regions of C1q, and which may be conformational, involving two or more C1q chains. A site on gp41 located between residues 601 and 613 (gp160 nomenclature), i.e. within the immunodominant domain of HIV-1. This site shares homology with the corresponding region of HIV-2.

Amino Acid Sequence

Recombinant versus plasma-derived hepatitis B vaccine: comparison of immunogenicity in medical students.

A group of 92 medical students were immunized with a commercial recombinant hepatitis B vaccine (Engerix B). Antibody responses were determined and compared with those to plasma-derived Pasteur vaccine, obtained in 1986. Antibody concentrations were significantly higher in the group given recombinant vaccine, therefore this vaccine has superior immunogenicity and probably confers extended duration of protection.

Adult

Human immunodeficiency virus type 1 activates the classical pathway of complement by direct C1 binding through specific sites in the transmembrane glycoprotein gp41.

Human immunodeficiency virus type 1 (HIV-1), in contrast to animal retroviruses such as murine leukemia virus, is not lysed by human complement. Nevertheless, HIV-1 activates complement via the classical pathway independent of antibody, and C3b deposition facilitates infection of complement receptor-bearing cells. Using gel exclusion chromatography on Sephacryl S-1000, purified virions were found to bind 125I-labeled C1q, but not 125I-labeled dimeric proenzyme C1s. Virions activated the C1 complex, reconstituted from C1q, proenzyme C1r, and 125I-labeled proenzyme C1s, to an extent comparable with that obtained with immunoglobulin G-ovalbumin immune complexes. To determine the activating viral component, recombinant viral proteins were used: in the solid phase, soluble gp41 (sgp41) (the outer membrane part of gp41, residues 539-684 of gp160) bound C1q, but not dimeric proenzyme C1s, while gp120 was ineffective. In the fluid phase, sgp41 activated the C1 complex in a dose- and time-dependent manner, more efficiently than aggregated Ig, but less efficiently than immune complexes. To localize the C1 activating site(s) in gp41, synthetic peptides (15-residue oligomers spanning amino acids 531-695 of gp160) were used. Peptides covering positions 591-605 and 601-620 and, to a lesser extent, positions 561-575, had both the ability to bind C1q and to induce C3 deposition. These data provide the first experimental evidence of a direct interaction between the C1 complex and HIV-1, and indicate that C1 binding and activation are mediated by specific sites in gp41.

Binding Sites

Anti-thymocyte globulin treatment of a patient for paroxysmal nocturnal haemoglobinuria-aplastic anaemia syndrome: complement activation and transient decrease of the PNH clone.

Paroxysmal nocturnal haemoglobinuria (PNH) is an acquired clonal stem cell disorder resulting in insufficient and defective haematopoesis associated frequently with aplastic anaemia (AA). A deficiency of the glycosyl phosphatidylinositol (GPI)-anchored complement activation regulatory proteins CD55 and CD59 is responsible for an increased sensitivity of erythrocytes to complement attack leading to chronic intravascular haemolysis with haemoglobinuria. In this study we investigated the effects of complement activation caused by anti-thymocyte globulin (ATG) treatment on the PNH clone in a patient affected with the PNH/AA-syndrome. Fluid phase complement components C3, C4, C6 and terminal complement complex (TCC) were assayed by ELISA. CD55, CD59 and cell-associated TCC were monitored by flow cytometry. ATG treatment resulted in profound systemic complement activation which led to a decrease in the levels of native C3 and C4 to 65% and 40%, respectively, of the original levels on day 5 and of C6 and TCC to 61% and 23%, respectively, on day 10. A return to pre-treatment levels was observed for C3 by day 15, for C6 by day 30 and for C4 by day 90. Flow cytometry revealed that the deficiency in the GPI-anchored protein was restricted to granulocytes, while lymphocytes remained unaffected. Cell-bound TCC increased by 1.67-fold and 2.37-fold on day 5 and day 10, respectively, decreasing to 1.40-fold and 1.30-fold on day 15 and day 30, respectively. The percentage of PNH granulocytes as identified by the absence of the CD55- and CD59-antigens exhibited a temporary decrease from 72% on day 0 to 65% on day 5 and 59% on day 10 and returned thereafter to the original percentage of 70% by day 15 and exceeding this level to 76% on day 30 and 79% on day 90. We report profound activation of the classical pathway of the complement cascade and the terminal complement complex by the globulin leading to a transient decrease of the PNH clone, presumably due to subsequent lysis of the PNH cells devoid of complement regulatory proteins.

Anemia, Aplastic