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Biomedical subjects

S Ansorge

Publications and source records attributed to S Ansorge.

At least 109 records · Page 6Linked to original sources

Functional role of CD26 on human B lymphocytes.

CD26 is a well-known activation marker on T cells and natural killer (NK) cells [1]. It is identical with the ectopeptidase dipeptidyl peptidase IV (DP IV). The expression of CD26 on B cells has been discussed controversially [2,3]. We have studied the expression of this enzyme on B cells from the peripheral blood of healthy donors and of CVID patients, on cells of the Daudi Burkitt line and the EBV-transformed B-cell lines Jojo and Laz509. DP IV was detected by using anti-CD26 monoclonal antibodies and with help of specific enzyme substrates. Further the influence of specific synthetic DP IV inhibitors on mitogenic activation of purified B cells and DNA synthesis of cell lines was studied. We could show that in both groups 0-5% of freshly isolated CD20-positive B cells do express the CD26 antigen. After stimulation with pokeweed mitogen or St. aureus protein, the fraction of CD26-positive cells was enhanced up to 51% and 36%, respectively. Interestingly, induction of CD26 expression on B cells from CVID patients occurs in a manner similar to the B cells from healthy donors. Treatment of peripheral blood B cells and B-cell lines with highly specific competitive DP IV inhibitors leads to a significant inhibition of DNA synthesis in a dose-dependent manner. These data show that CD26 can be considered to be an activation marker not only of T- and NK cells but also of a main population of B cells, suggesting an involvement of CD26 in B-cell activation.

B-Lymphocytes↗

Enzymatic activity of DPIV/CD26 is involved in PMA-induced hyperphosphorylation of p56lck.

The T-cell activation antigen CD26 (dipeptidyl peptidase IV, DPIV) is a proline specific protease thought to be involved in regulation of the immune response. Several former results characterized this ectoenzyme as a possible accessory molecule of the T-cell surface. The molecular events of lymphocyte activation mediated by this enzyme, as well as the physiological ligands of dipeptidyl peptidase, are only partly established. Here we provide evidence for a direct involvement of DPIV/CD26 in early phosphorylation mechanisms which were known to be essential in the signal transduction cascade of human T lymphocytes. Considering a possible functional linkage between CD26 and the tyrosine kinase p56lck, we have investigated the action of DPIV-specific inhibitors (Lys[Z[NO2)]-thiazolidide and -piperidide) on the PMA-induced hyperphosphorylation of p56lck in human T cells. Interestingly, this hyperphosphorylation of p56lck was strongly suppressed by both inhibitors in a dose-dependent manner. Removal of these inhibitors totally restored the hyperphosphorylation. Therefore, this effect could be considered as reversible. Free thiazolidine and piperidine, used in control experiments, neither inhibit DPIV enzyme activity nor PMA-induced hyperphosphorylation. The data presented here provide evidence that DPIV/CD26 is directly involved in early processes of T-cell activation. Furthermore, these findings strongly support the assumption that the signaling function of CD26 requires its enzymatic activity.

Dipeptidyl Peptidase 4↗

Transforming growth factor beta 1 inhibits interleukin-10 mRNA expression and production in pokeweed mitogen-stimulated peripheral blood mononuclear cells and T cells.

The multifunctional cytokine transforming growth factor-beta 1 (TGF-beta 1) is known to inhibit the proliferation of lymphocytes. Whether this effect is a result of a direct action of TGF-beta 1 or an involvement of other "immunoinhibitory" cytokines is not yet clear. Here we have analyzed the effects of TGF-beta 1 on IL-10 and IL-1RA production in pokeweed mitogen-stimulated peripheral blood mononuclear cells (PBMC) and purified T lymphocytes. We show in these systems that TGF-beta 1 at a concentration of 10 ng/ml significantly suppresses both IL-10 mRNA expression and IL-10 production. IL-2 and IL-6 were capable of abolishing the effect of TGF-beta 1 on DNA synthesis and production of IL-10 by T lymphocytes in an additive manner. However, TGF-beta 1 did not influence IL-1RA production in PWM-stimulated PBMC. The present data show that the inhibitory effect of TGF-beta 1 on mitogen-activated immune cells is not the consequence of induction of the inhibitory cytokines IL-10 or IL-1RA but rather an inhibitory action on the production of IL-2 and/or IL-6.

DNA↗

Antibody-induced modulation of CD26 surface expression.

The ability of different anti-CD26 monoclonal antibodies to modulate the expression of CD26 on human T lymphocytes was investigated. By means of a new non-radioactive method using fluorescein isothiocyanate (FITC)-labelled and unlabelled anti-CD26 monoclonal antibodies and flow cytometry, we measured the internalization and re-expression of CD26 on freshly isolated resting human T lymphocytes. The modulation of CD26 surface expression takes place in primarily CD26+ as well as in CD26- T lymphocytes, indicating the presence of an intracellular CD26 pool. In fact, with two different anti-CD26 monoclonal antibodies (Ta1 and M5) intracellular CD26 was detected out of which newly expressed CD26 might have originated. This intracellular CD26 pool appears to be maintained by continuous translation of CD26 mRNA.

Antibodies, Monoclonal↗

Non-radioactive labelling and immunoprecipitation analysis of leukocyte surface proteins using different methods of protein biotinylation.

The biotinylation of surface proteins and the detection of immunoprecipitated protein(s) after transfer to nitrocellulose using chemiluminescence methods is a highly sensitive alternative to hazardous radioactive labelling procedures. Ligation of proteins using the common biotin-NHS-ester (N-hydroxysuccinimido-biotin) is often associated with a decrease in immunoreactivity. Here a new non-radioactive method of leukocyte surface glycoprotein labelling using biotin-LC-hydrazide is described. This technique is based on the labelling of glycoproteins after mild oxidation of carbohydrate hydroxyl groups to reactive aldehydes. Flow cytometric and immunoprecipitation analyses of selected leukocyte markers such as CD3, CD26 and CD65 indicated that the alteration in immunoreactivity achieved by NHS-mediated biotin ligation was different from that obtained with hydrazide-mediated biotin ligation. CD3 and CD26 immunoreactivity was diminished using NHS biotinylation but preserved by biotin-LC-hydrazide, whereas CD65 binding to monoclonal antibodies was completely abolished after treatment with biotin-hydrazide. However, the immunoreactivity of CD13 was found to be totally unaffected by both NHS and hydrazide biotinylation. The combination of different biotinylation methods for surface protein labelling offers a viable alternative to radioiodination in the biochemical analysis of membrane proteins.

Antibodies, Monoclonal↗

Prenylated proteins and lymphocyte proliferation: inhibition by d-limonene related monoterpenes.

The aim of the present study was to explore the role of post-translational isoprenoid modification of cellular proteins in the proliferation of human lymphocytes. We here report that treatment of phytohemagglutinin-stimulated peripheral blood mononuclear cells with monoterpenes including d-limonene, perillic acid and perillyl alcohol (0.5-5 mM) which selectively inhibit the isoprenylation of 21-26-kDa proteins resulted in a dose-dependent inhibition of DNA synthesis. Cell cycle analysis revealed that perillic acid arrested cells in G1 and prevented cells from entering S phase in a manner similar to that induced by the specific 3-hydroxy-3-methylglutaryl-CoA reductase inhibitor, compactin. However, unlike compactin, the perillic acid-induced effects on lymphocyte proliferation were not prevented by addition of mevalonate. We also examined the incorporation of [3H]mevalonate into proteins in resting and phytohemagglutinin-stimulated lymphocytes during the first 30 h of culture. While in unstimulated lymphocytes radioactivity was predominantly incorporated into a cluster of 21-26-kDa proteins, mitogenic stimulation was associated with a striking increase in [3H]mevalonate incorporation into a protein (approximately 68 kDa) with migration characteristics similar to that of nuclear lamin B. Treatment of phytohemagglutinin-stimulated lymphocytes with 5 mM d-limonene, 2.5 mM perillic acid or 1.25 mM perillyl alcohol strongly suppressed [3H]mevalonate-labeling of proteins to a degree that correlated with the level of DNA synthesis inhibition. These findings suggest that those mevalonate-derived products required for lymphocyte proliferation may include one or more isoprenylated proteins and that the isoprenylation of these proteins is required for cell cycle progression.

Cell Cycle↗

Expression of the aminopeptidase N (CD13) gene in the human T cell lines HuT78 and H9.

The membrane-bound metalloprotease aminopeptidase N (APN, CD13, EC 3.4.11.2) is a well-established marker of normal and malignant cells of the myelomonocytic lineages. It is also expressed by leukemic blasts of a small group of patients suffering from acute or chronic lymphoid leukemia. CD13-specific monoclonal antibodies do not bind to the surface of normal B lymphocytes and APN-mRNA was not detectable by Northern analysis in normal lymphocytes or in T cell lines. A recent paper, however, describes the expression of CD13 on concanavalin A-stimulated T cells. Here, by means of enzymatic amplification of cDNA, cloning and sequencing of amplified cDNA fragments, in situ hybridization, and transcription start site mapping, evidence is provided that the human T cell lines HuT78 and H9 do contain APN-mRNA. Ala-pNA-hydrolyzing activity was detected in viable cells and cell homogenates as well as in size-fractionated protein fractions. Alanine-beta-naphthylamide (Ala-beta NA)-hydrolyzing activity was readily detectable after isoelectric focusing and blotting and was shown to be localized exclusively intracellularly in both cell lines. Usage of aminopeptidase-specific effectors revealed this activity to be distinct from CD13.

Aminopeptidases↗

Dithio-bis-mercaptoethanesulphonate (DIMESNA) does not prevent cellular damage by metabolites of ifosfamide and cyclophosphamide in LLC-PK1 cells.

Ifosfamide (IF) is an alkylating cytostatic with urotoxic (haemorrhagic cystitis) and nephrotoxic (Fanconi syndrome) side effects. Cyclophosphamide (CP), a structural isomer of IF, shows urotoxic but no nephrotoxic side effects. The development of haemorrhagic cystitis during therapy with IF or CP can be prevented by the uroprotective drug sodium-2-mercaptoethanesulphonate (MESNA). However, even in the presence of MESNA, Fanconi syndrome may still develop after therapy with IF. Using the renal tubular cell line LLC-PK1, we investigated whether there is a protective effect of either MESNA or of its major metabolite DIMESNA, in combination with metabolites of IF or CP, on thymidine incorporation, uridine incorporation or total protein. DIMESNA, the dimer of MESNA, is the dominant form of the molecule in the circulation; the proximal tubular cell must convert this back to MESNA at the expense of glutathione, before it can exert its uroprotective action. We did not find a protective effect of DIMESNA under any of the experimental conditions tested. LLC-PK1 cells exposed to 3 mmol/l DIMESNA did not convert DIMESNA to MESNA. The toxic effect of the CP metabolite 4-OOH-CP was more pronounced in the presence of DIMESNA than in its absence. MESNA completely prevented the toxic effects of acrolein and of 4-OOH-CP. The toxic effects of 4-OOH-IF and of chloracetaldehyde, two major metabolites of IF, were significantly reduced in the presence of MESNA. However, even at 30-fold molar excess of MESNA over a 4-OOH_IF, thymidine incorporation remained reduced by 40% compared with controls, indicating incomplete protection of tubular cells against metabolites of IF. Similarly, the effect of chloracetaldehyde was not completely reversed by MESNA.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Toxicity of ifosfamide, cyclophosphamide and their metabolites in renal tubular cells in culture.

Ifosfamide (IF) and cyclophosphamide (CP) are highly effective alkylating cytostatic drugs. IF and CP have to be activated through a metabolic step in vivo; numerous metabolites are known. While both IF and its structural isomer CP have severe urotoxic side effects, only IF is also a nephrotoxic drug, causing tubular damage resulting in Fanconi syndrome in some cases. Little information is available regarding the pathogenic mechanism of tubular damage by IF. We used the renal epithelial cell line LLC-PK1, which has many properties of the proximal tubule, in order to investigate the toxicity of IF and CP and of their reactive metabolites 4-hydroxy-IF (4-OH-IF), 4-hydroxy-CP (4-OH-CP), acrolein and chloroacetaldehyde (CAA). Protein content of monolayers, DNA and RNA synthesis were determined by standard techniques (thymidine and uridine incorporation). IF and CP had the lowest toxicities of all compounds tested. Both drugs inhibited thymidine incorporation by about 30% at a concentration of 300 mumol/l after 1 h incubation. 4-OH-IF and 4-OH-CP were significantly more toxic than the parent drugs. Thymidine incorporation, the most sensitive parameter, was reduced by about 70% by 300 mumol/l of either compound. In addition, 4-OH-CP reduced the total protein content of monolayers. 4-OH-IF did not effect protein content and RNA synthesis. Acrolein, the most toxic metabolite tested, reduced all three parameters significantly at concentrations of 50-75 mumol/l after 1 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetaldehyde↗

Transforming growth factor-beta 1 (TGF-beta 1) inhibits DNA synthesis of PWM-stimulated PBMC via suppression of IL-2 and IL-6 production.

The multifunctional cytokine transforming growth factor-beta 1 (TGF-beta 1) is known to inhibit the proliferation of lymphocytes. However, the role of TGF-beta 1 in the production and secretion of various interleukins is not yet clear. In this study we have analysed in parallel the effects of TGF-beta 1 on both DNA synthesis and production of the cytokines IL-1, IL-2, IL-6, and TNF-alpha by pokeweed mitogen-stimulated peripheral blood mononuclear cells. With this stimulation system we show that TGF-beta 1 at a concentration of 15 ng/ml significantly suppresses IL-2 and IL-6 production. The release of IL-1 and TNF-alpha, however, was not influenced under these conditions. Under similar conditions DNA synthesis of PWM-stimulated PBMC was found to be inhibited by 50 +/- 10%. Using flow cytometric methods we could demonstrate that TGF-beta 1 arrested the cells in the G0/G1 phase of the cell cycle. Taken together, these results suggest that TGF-beta 1 may suppress immune responses by inhibiting the endogenous production of IL-2 and IL-6.

DNA↗

Inhibitors of dipeptidyl peptidase IV (DP IV, CD26) specifically suppress proliferation and modulate cytokine production of strongly CD26 expressing U937 cells.

Various studies from different laboratories have shown that the membrane ectoenzyme dipeptidyl peptidase IV (DP IV, CD26) expressed in T and NK cells is involved in the regulation of DNA synthesis and cytokine production. In this paper, we performed a biochemical and functional characterization of dipeptidyl peptidase IV on the human histiocytic lymphoma cell line U937. Using U937 clones expressing low to high levels of membrane localized CD26, we found that the synthetic reversible inhibitors of DP IV, Lys-[Z(NO2)]-thiazolidide and Lys-[Z(NO2)]-piperidide, have different effects on all functions. In U937-H cells that strongly express high levels of CD26, DP IV inhibitors were shown to suppress DNA synthesis and production of IL-1 beta, but stimulate the secretion of the IL-1 receptor antagonist (IL-1RA) and of TNF-alpha. In contrast, both inhibitors did not influence the cytokine production and DNA synthesis in U937-L cells exhibiting low level CD26 expression. These data support the hypothesis that CD26 plays a crucial role in proliferation and cytokine production, not only in T cells, but also in other cell systems, and that enzymatic activity is essential for its function.

Blotting, Western↗

Thiol-proteindisulfide-oxidoreductase (proteindisulfide isomerase): a new plasma membrane constituent of mature human B lymphocytes.

The thiol-proteindisulfide-oxidoreductase (TPO, EC 1.8.4.2., proteindisulfide isomerase, EC 5.3.4.1.) is known as an cytoplasmatic enzyme, and is thought to be involved in the post-translational folding of disulfide containing proteins. Using monoclonal and polyclonal antibodies the authors were able to prove that this enzyme or an unknown homologous protein is localized also to the plasma membrane of B lymphocytes. In peripheral blood from healthy donors 11% of the mononuclear cells (PBMNC) expressed this surface antigen whereas in PBMNC of patients with B-cell chronic lymphocytic leukaemia 76% of the MNC were positive. This value correlates well with the known B-cell markers CD19 and CD20. However, this antigen is different from all known clustered B-cell markers. Immunoprecipitation analysis of PHA-stimulated PBMNC and of cells from patients suffering from chronic lymphocytic leukaemia revealed a membrane protein with the same molecular weight (61 kDa) as the TPO. These data suggest that this enzyme is present not only in the cytoplasm but also on the surface of B cells and that it is possibly involved in the regulation of the SH-SS status of the cell membrane proteins of B lymphocytes.

Adult↗

Dipeptidyl peptidase IV (CD 26) and aminopeptidase N (CD 13) catalyzed hydrolysis of cytokines and peptides with N-terminal cytokine sequences.

A number of natural cytokines are characterized as having dipeptidyl peptidase (DP) IV susceptible N-terminal peptide sequences. Here we demonstrate that oligopeptides with sequences analogous to the N-terminal part of human IL-1 beta, IL-2, TNF-beta and murine IL-6 were hydrolyzed by purified DP IV and aminopeptidase N (AP-N). The rate of DP IV-catalyzed hydrolysis of these peptides was negatively correlated with their chain length. In contrast to these results, no degradation was found under our conditions for the intact recombinant cytokines, IL-1 alpha, IL-1 beta, IL-2, G-CSF and for natural IL-2, independent of whether DP IV and AP-N were used separately or in combination.

Amino Acid Sequence↗

Detection of inhibition of HIV-1 protease activity by an enzyme-linked immunosorbent assay (ELISA).

An ELISA is described for the detection of HIV-1 protease activity using an immobilized gag-related polyprotein as substrate. Proteolytic activity was demonstrated with either bacterial lysates expressing HIV-1 protease or purified protease. No cleavage was observed with a protein preparation from control bacteria not expressing HIV-1 protease. Under these conditions the aspartyl-type protease inhibitor, pepstatin A, was found to inhibit HIV-1 protease cleavage by > 90% at a concentration of 0.1 mM. This assay may be a useful tool for the study of both synthetic and natural inhibitors of HIV-1 protease.

Enzyme-Linked Immunosorbent Assay↗

Dipeptidyl peptidase IV (CD26) on human lymphocytes. Synthetic inhibitors of and antibodies against dipeptidyl peptidase IV suppress the proliferation of pokeweed mitogen-stimulated peripheral blood mononuclear cells, and IL-2 and IL-6 production.

In the present report, we describe that synthetic inhibitors of and polyclonal and monoclonal antibodies against the membrane ectoenzyme dipeptidyl peptidase IV (DP IV, CD26) inhibit the production of IL-2 and IL-6 and, concomitantly, DNA synthesis of pokeweed mitogen-stimulated peripheral blood mononuclear cells (PBMC). The release of IL-1 and TNF-alpha, was not influenced under these conditions. The data support the hypothesis that DP IV, possibly in conjunction with other peptidase, is involved in the regulation of activation and proliferation of T lymphocytes.

Antibodies, Monoclonal↗

Anti-CD26 monoclonal antibodies can reversibly arrest human T lymphocytes in the late G1 phase of the cell cycle.

Three different anti-CD26 monoclonal antibodies (mAbs) are described, which specifically inhibited proliferation of human T lymphocytes after stimulation with PHA, tetanus toxoid or soluble anti-CD3 mAb. Anti-CD26 mAbs induced in T cells a dose-dependent shift of the maximum of DNA synthesis, which was due to a transitory arrest of cells in the cell cycle. This cell cycle arrest was found to occur in the late phase of G1 since the expression of the T cell activation markers CD25-, CD71-, and HLA-DR-positive cells was the same in anti-CD26 mAb-containing and control cultures. Propidium iodide staining further confirmed the assumption that the arrest occurs in the first round of the cell cycle before S phase cells were detectable. Because the cells were arrested before consuming IL-2 in the S phase, we observed in accumulation of IL-2 in anti-CD26 mAb-containing cultures, whereas IFN-gamma production by PHA-activated T lymphocytes was reduced. These data indicate that CD26 is involved in the processes of T cell activation and proliferation.

Antibodies, Monoclonal↗

The activity of gamma-glutamyl transpeptidase (gamma-GT) in populations of mononuclear cells from human peripheral blood.

The activity of gamma-glutamyl transpeptidase (EC 2.3.2.2) was observed in populations of non-stimulated mononuclear cells of human peripheral blood selected with antibody-coated magnetic particles. The highest activities of gamma-GT were found in monocytes (7.3-20.0 pkat/10(6) cells). The examination of T lymphocytes revealed a significant difference between CD4-positive (4.1 pkat/10(6) cells) and CD8-positive cells (1.2 pkat/10(6) cells). B lymphocytes and NK cells showed the lowest activities of 0.3 and 1.3 pkat/10(6) cells, respectively. The obvious differences in gamma-GT activities demonstrated here may reflect different biochemical capacities of these cell types, related to their distinct functions in the immune system.

B-Lymphocytes↗

Aminopeptidase N (CD13, EC 3.3.4.11.2) occurs on the surface of resting and concanavalin A-stimulated lymphocytes.

Using different approaches evidence is provided that aminopeptidase N (APN, EC 3.4.11.2, CD13) is expressed on the surface of resting and stimulated human lymphocytes. 1) 50% of total Ala-pNA hydrolysis of viable cells was found to be due to the ectoenzyme APN as revealed by titration with the new inhibitor probestin in comparison to purified APN from human kidney (Ki value 6.5 nM). After stimulation with ConA an increase of Ala-pNA hydrolysis was observed from 8 pkat up to 15 pkat/10(6) cells. 2) This correlated with an increase of APN (CD13) surface expression as detected by antibody surface labeling of unstimulated (5-12% CD13 positive cells) and stimulated lymphocytes (28-36% CD13 positive lymphocytes) using polyclonal and monoclonal antibodies. 3) In vivo APN was found to be expressed on the surface of up to 50% lymphocytes isolated from the synovial fluid of rheumatoid patients.

Aminopeptidases↗