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J Langner

Publications and source records attributed to J Langner.

At least 37 records · Page 2Linked to original sources

Systematic mutational analysis of the active-site threonine of HIV-1 proteinase: rethinking the "fireman's grip" hypothesis.

Aspartic proteinases share a conserved network of hydrogen bonds (termed "fireman's grip"), which involves the hydroxyl groups of two threonine residues in the active site Asp-Thr-Gly triplets (Thr26 in the case of human immunodeficiency virus type 1 (HIV-1) PR). In the case of retroviral proteinases (PRs), which are active as symmetrical homodimers, these interactions occur at the dimer interface. For a systematic analysis of the "fireman's grip," Thr26 of HIV-1 PR was changed to either Ser, Cys, or Ala. The variant enzymes were tested for cleavage of HIV-1 derived peptide and polyprotein substrates. PR(T26S) and PR(T26C) showed similar or slightly reduced activity compared to wild-type HIV-1 PR, indicating that the sulfhydryl group of cysteine can substitute for the hydroxyl of the conserved threonine in this position. PR(T26A), which lacks the "fireman's grip" interaction, was virtually inactive and was monomeric in solution at conditions where wild-type PR exhibited a monomer-dimer equilibrium. All three mutations had little effect when introduced into only one chain of a linked dimer of HIV-1 PR. In this case, even changing both Thr residues to Ala yielded residual activity suggesting that the "fireman's grip" is not essential for activity but contributes significantly to dimer formation. Taken together, these results indicate that the "fireman's grip" is crucial for stabilization of the retroviral PR dimer and for overall stability of the enzyme.

Amino Acid Sequence↗

Cell-cell contact of human T cells with fibroblasts changes lymphocytic mRNA expression: increased mRNA expression of interleukin-17 and interleukin-17 receptor.

Using random arbitrarily primed-reverse transcribed-PCR and sequence analysis, we investigated changes in lymphocytic molecules after cell-cell contact with fibroblasts. An mRNA species which was upregulated in Jurkat T cells by cell-cell contact with MRHF cells (a human foreskin fibroblast line) was identified as coding for the human interleukin-17 receptor. This finding was confirmed by quantitative RT-PCR for the HUT78 and Jurkat T cell lines, for peripheral blood lymphocytes, and for tonsillar T cells. Furthermore, the interleukin-17 mRNA, coding for a proinflammatory cytokine, was also upregulated in peripheral blood lymphocytes and tonsillar T cells after cell-cell contact with fibroblasts. Supernatants obtained from cell-cell contact-stimulated peripheral blood lymphocytes enhance the production of interleukin-6 and interleukin-8 by fibroblast-like synoviocytes and this effect could be blocked by interleukin-17 antibodies. Changes in the mRNA levels of Jurkat T cells induced by cell-cell contact with adherent cells were also found for M-type pyruvate kinase, for tropomyosin TM30 and for the p54nrb gene product.

Cell Communication↗

Interleukin-17 stimulates the expression of IkappaB alpha mRNA and the secretion of IL-6 and IL-8 in glioblastoma cell lines.

Interleukin-17 (IL-17) has been characterized as a proinflammatory cytokine produced by CD4+ activated memory T cells. In an effort to elucidate the biological effects of IL-17 in glial cells, we investigated the ability of this cytokine in order to activate nuclear factor (NF)-kappaB, which is being discussed as one of the most important transcription factors in the regulation of neuronal and glial cell function. Activation of NF-kappaB involves the degradation of its cytoplasmatic inhibitor IkappaB-alpha, which allows the nuclear translocation of NF-kappaB, and ensures transcriptional activation of genes including IkappaB-alpha itself. Using a competitive RT-PCR, we examined the IL-17-induced IkappaB-alpha mRNA expression in glioblastoma cells, and we examined IL-17 up-regulated IkappaB-alpha mRNA expression in a dose- and time-dependent fashion with a maximum time between 1 and 3 h. This induction could be inhibited by Calphostin C (protein kinase C inhibitor) and genistein (tyrosine kinase inhibitor). After 60 min of IL-17 stimulation, a degradation of the IkappaB-alpha protein was detectable. Furthermore, IL-17 stimulated the secretion of IL-6 and IL-8 in glial cells, and IL-17 and IL-1beta in combination showed a superadditive effect. We suggest IL-17 to play a role as an immune factor, possibly involved in complex pathophysiological interactions of neurodegenerative diseases.

DNA-Binding Proteins↗

UDP-GlcNAc 2-epimerase: a regulator of cell surface sialylation.

Modification of cell surface molecules with sialic acid is crucial for their function in many biological processes, including cell adhesion and signal transduction. Uridine diphosphate-N-acetylglucosamine 2-epimerase (UDP-GlcNAc 2-epimerase) is an enzyme that catalyzes an early, rate-limiting step in the sialic acid biosynthetic pathway. UDP-GlcNAc 2-epimerase was found to be a major determinant of cell surface sialylation in human hematopoietic cell lines and a critical regulator of the function of specific cell surface adhesion molecules.

Animals↗

CD13--not just a marker in leukemia typing.

Membrane peptidases are a multifunctional group of ectoenzymes that have been implicated in the control of growth and differentiation of many cellular systems. Here, using aminopeptidase N/CD13 as an example, Dagmar Riemann and colleagues discuss the role of cell-cell contact in peptidase regulation and the influence of peptidases on cellular functions.

Adult↗

Effects of twelve months ethanol feeding on rat liver metabolic activity.

Thirty male Wistar rats were fed with 15% ethanol (V/V) for one year. Thirty other male animals were the control group. To determine the possible metabolic disturbances caused by chronic ethanol feeding in blood we measured in blood metabolic parameters, and in a liver perfusion assay the hepatic insulin clearance and hepatic urea production in these animals. Between the ethanol-fed and the control animals there were significant differences in the following parameters: blood insulin concentration (47 vs. 2 microU/ml) and activities of amino acid transferases in liver homogenates at the end of the perfusion experiments (ASAT, 5950 vs. 70; ALAT, 3632 vs. 93 U/l). The other parameters were still normal in the ethanol-fed animals. Thus in these experiments after 12 months of 15% (V/V) ethanol feeding the rats still showed only a state of beginning metabolic disturbances in the liver. The results are discussed under consideration of the formation of acetaldehyde protein adducts in all rat organs investigated, namely, liver, kidney, heart and skeleton muscle, gut and spleen.

Acetaldehyde↗

Comparative determination of the antiproteolytic potential of therapeutically used blood protein preparations.

Clinical situations with release of proteinases from blood cells or tissues into the circulation may result in a marked decrease of blood proteinase inhibitor content which in turn may result in a capillary leak syndrome, shock and even in exitus letalis. Replenishment of blood proteinase inhibitors is of benefit in such situations. In this study the inhibitory potential of fresh plasma, fresh frozen plasma and the liquid plasma protein preparation Biseko has been tested with the following enzymes: human leukocyte elastase, human plasmin, human matrix metalloproteinase-9, bovine trypsin, bovine chymotrypsin and rat liver lysosomal cathepsins. The concentration of the blood protein preparations resulting in 50% inhibition of constant amounts of each of the enzymes has been determined by plotting residual activity vs. log of concentration of blood protein preparation in enzyme assays. From these IC50 values inactivation ratios for 1 mg and 1 ml of the blood protein preparations was calculated. These inactivation ratios show an equal suitability of fresh plasma, fresh frozen plasma or full plasma proteins for replenishment of plasma proteinase inhibitory potential in vitro. As additional finding, commercial preparations of human serum albumin exert a surprisingly high inhibitory potential to lysosomal cathepsins.

Animals↗

Biological effects of the dihydroorotate dehydrogenase inhibitor polyporic acid, a toxic constituent of the mushroom Hapalopilus rutilans, in rats and humans.

Inhibitors of dihydroorotate dehydrogenase (DHO-DH), such as brequinar or leflunomide, have been intensively tested for their antitumour and immunomodulating effects. Polyporic acid (PA) from the mushroom Hapalopilus rutilans (H. r.) also is a DHO-DH inhibitor (50% inhibitory concn., IC50, 10(-4)-10(-3) M). As three people had been poisoned following ingestion of H. r. we wanted to investigate the effects of PA in rats and in cell cultures. Rats given PA via probang (100-800 mg/ kg) within 24 h developed strongly reduced locomotor activity, depressed visual placing response and impaired wire manoeuvre. Laboratory investigation of blood revealed hepatorenal failure, metabolic acidosis as well as hypokalaemia and hypocalcaemia. All symptoms closely paralleled the effects seen in the poisoned people. Proliferation of cultured cells (including rat brain neurons and glia, fibroblasts, tumour cells) was depressed at 10(-4)-10(-3) M PA. We conclude that the intoxication of people poisoned with H. r. is due to the high content of the DHO-DH inhibitor PA.

Agaricales↗

Regulation of the expression of aminopeptidase A, aminopeptidase N/CD13 and dipeptidylpeptidase IV/CD26 in renal carcinoma cells and renal tubular epithelial cells by cytokines and cAMP-increasing mediators.

Aminopeptidase (AP) A is a transmembrane type II molecule widely distributed in mammalian tissues. Since APA expression may be absent in renal cell carcinoma (RCC), it is possible that there is an altered regulation or other defect of APA upon malignant transformation of proximal tubular cells. However, investigations into the regulation of APA on tumour cells are rare. We report, for the first time, that both transforming growth factor-beta 1 (TGF-beta1) and tumour necrosis factor-alpha (TNF-alpha) down-regulate APA mRNA as well as protein expression in renal tubular epithelial cells and RCC cells in culture. In addition to this, both cytokines decrease dipeptidylpeptidase (DP) IV/CD26 mRNA, but not APN/CD13 mRNA expression. Otherwise, IL-4 and IL-13 increase CD13 as well as CD26 expression, but do not alter APA expression. Interferon-alpha (IFN-alpha), IFN-beta and IFN-gamma increase mRNA expression of all the three membrane ectopeptidases, whereas IL-1, IL-6, IL-7, IL-12 and granulocyte-macrophage colony-stimulating factor (GM-CSF) have been found to be without any significant effect. Treatment of cultured cells with cAMP-increasing agents, such as 8-bromo-cAMP or A23187, results in an increase in APA and DPIV/CD26, but no change in APN/CD13 mRNA expression or even a decrease in it. Furthermore, AP inhibitors can influence APA mRNA expression, since bestatin causes an increase in APA expression in a time- and dose-dependent manner, whereas bestatin does not change CD13 or CD26 expression. No difference could be found with respect to the modulation by different mediators between RCC cells and renal epithelial cells, though permanent tumour cell lines such as Caki-1 and Caki-2 may have lost some of the normally expressed peptidases.

Adjuvants, Immunologic↗

Regulation by transforming growth factor-beta1 of class II mRNA and protein expression in fibroblast-like synoviocytes from patients with rheumatoid arthritis.

Transforming growth factor (TGF)-beta1 is an immunosuppressive cytokine that modulates the expression of class II histocompatibility antigens on human cells. Aberrant HLA class II expression on synovial lining cells of rheumatoid arthritis synovial membrane has been described, and the extent and intensity of class II expression on the cells was claimed to be linked with the severity of the disease. In this study, the effects of TGF-beta1 on HLA class II antigen expression in fibroblast-like synoviocytes (SFC) from rheumatoid synovectomy tissues were determined by flow cytometric analysis and quantitative RT-PCR. We found that pre-incubation of cells with TGF-beta1 was able to down-regulate IFN-gamma-induced DR protein expression in SFC. TGF-beta1, additionally, down-regulated IFN-gamma-stimulated class II transactivator (CIITA) and DRB mRNA expression. The constitutive expression of CIITA mRNA was completely abolished and the constitutive expression of DRB mRNA was decreased after treatment of SFC with TGF-beta1 for 24 h. Addition of the TGF-beta inhibitor decorin to SFC for 24 h before TGF-beta1/IFN-gamma treatment was able to reduce the down-regulatory effect of TGF-beta1 on DR antigen expression induced by IFN-gamma. Using competitive RT-PCR, we found that SFC constitutively expressed decorin mRNA and that treatment of cells with TGF-beta1 for 24 h reduced the constitutive expression of decorin mRNA by 65%. Our results show that TGF-beta1 is able to reduce the expression of HLA class II mRNA and protein, and suggest a tight regulation between TGF-beta1 and decorin in SFC of the rheumatoid synovium.

Arthritis, Rheumatoid↗

Occurrence of acetaldehyde protein adducts formed in various organs of chronically ethanol fed rats: an immunohistochemical study.

We investigated the pathophysiological role of acetaldehyde protein adducts formed in vivo in organs of chronically alcohol fed male Wistar rats. Thirty male Wistar rats were fed on rodent pellets and 15% alcohol (V/V) for 5, 8 and 12 months, respectively before they were sacrificed. Further 30 male rats were chosen as the control group. We tested several organs by histological and immunohistochemical methods. Using immunohistological analysis, in the 12 months groups the basal membranes of glomerula, the membranes of liver, skeleton muscle and heart cells, and the gut were stained positively for acetaldehyde adducts. Using Western blotting of liver cell fractions (mitochondria/ lysosomes; microsomes; cytosol) adducts in charateristic molecular weight regions were detected. Approximately 30% of the sera of experimental rats contained antibodies against the acetaldehyde adducts formed in vivo. Immunologically detectable acetaldehyde adducts could be found in all rat organs tested. The stage of alcohol disease attained in this experiment after 12 months of ethanol feeding is described as the initial phase of manifestations of disturbances that are seen also in the carbohydrate metabolism.

Acetaldehyde↗

Endopeptidase 24.11/CD10 is down-regulated in renal cell cancer.

The regulatory mechanisms responsible for malignant transformation, tumor progression and metastasis in renal cell cancer (RCC) are still unclear, but there is some evidence that biologically active peptides might have regulatory effects on the behavior of this malignancy. Tumor cells can change local concentrations of active peptides by modulating their cell-surface enzymes. Using immunohistochemistry and enzyme-histochemistry, the expression of various membrane peptidases was examined in RCC and adjacent noninvaded renal parenchyma (n = 44). We describe the down-regulation of neutral endopeptidase 24.11 (NEP) protein expression in RCC of the clear cell/chromophilic type when compared with renal parenchyma, and show for the first time the lack of enzyme activity of NEP in RCC. The strongest expression could be found for dipeptidyl peptidase IV (DPIV) which is only decreased in RCC of the chromophobe cell type and is even present in oncocytoma. Aminopeptidase N (APN) and aminopeptidase A (APA) show attenuated expression in up to one third of clear cell/ chromophilic RCC. Chromophobe RCC and oncocytomas do not express APN, APA, NEP and gamma-glutamyltranspeptidase.

Adenoma, Oxyphilic↗

New ways of designing suprastructures for fixed implant-supported prostheses.

The replacement of lost teeth and tooth-bearing tissues with implant-supported prostheses often forced both dentist and technician to choose removable overdentures because they were the only treatment modality possible. By means of a clinical case, this article demonstrates a new approach in framework design that not only expands the limitations of conventional ceramometal implant prostheses, but also eliminates a great number of the hazards that cause implant failure with a new type of suprastructure. The technique enables both the clinician and the technician to apply all of the esthetic possibilities of tooth-supported metal ceramic crown and bridge techniques. This technique combines screw and cementation retention without changing the original treatment protocol. A new casting technique introduced by Sonntag and a new specially developed alloy was used. Essentially, the reconstructive body has been broken down into a screw-retained soft tissue/bone-replacing part using a one-piece casting technique, and a crown-replacing part to be provisionally cemented with a large variety of new possibilities.

Aged↗

Induction of aminopeptidase N/CD13 on human lymphocytes after adhesion to fibroblast-like synoviocytes, endothelial cells, epithelial cells, and monocytes/macrophages.

Aminopeptidase N (APN/CD13) is a transmembrane ectoenzyme occurring on a wide variety of cells. In contrast to monocytes and granulocytes, lymphocytes of peripheral blood do not express CD13 Ag. However, tumor-infiltrating T cells in renal cell cancer as well as synovial fluid T cells from patients suffering from various forms of arthritis can be CD13 positive. To learn more about expression of CD13 in these tissues, we cocultured lymphocytes with different adherent cell lines. CD13 expression was induced in T and B lymphocytes upon adhesion to fibroblast-like synoviocytes, HUVEC, renal tubular epithelial cells, and monocytes/macrophages but not always upon interaction with different tumor cell lines. Induction of APN was rapid, occurring as early as 1 h after coincubation. Expression persisted for >3 days and partially resisted inhibition by cycloheximide. Fixation of adherent cells with paraformaldehyde could not prevent induction of CD13 in lymphocytes. Soluble APN from human kidneys or placenta could not induce CD13 expression on lymphocytes. Induction of CD13 Ag on lymphocytes required direct cell-to-cell contact as shown in experiments using dual chambers. Lymphocytes exhibited an induction not only in CD13 protein but also in Ala-pNA-cleaving enzyme activity and in CD13 mRNA. Lymphocytic expression of CD13 represents a potentially increased cellular ability to inactivate inflammatory mediators. Furthermore, CD13 could be involved in adhesion, in lymphocytic migration, or in the Ag processing of peptides bound in the groove of MHC class II molecules.

B-Lymphocytes↗