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H Tschesche

Publications and source records attributed to H Tschesche.

At least 73 records · Page 4Linked to original sources

Inhibition of degranulation of human polymorphonuclear leukocytes by complement factor D.

A degranulation inhibiting protein could be isolated from human plasma ultrafiltrate by a three-step purification method including ion-exchange chromatography, gelfiltration and affinity-chromatography. The protein was identified as complement factor D by means of sequence analysis. Its degranulation inhibiting activity was determined with regard to its effect on the FNLPNTL-induced lactoferrin secretion of human polymorphonuclear leukocytes. Complement factor D caused a dose-dependent decrease of the FNLPNTL-stimulated lactoferrin degranulation down to 34% of stimulated controls.

Amino Acid Sequence↗

Evidence for the tissue inhibitor of metalloproteinases-1 (TIMP-1) in human polymorphonuclear leukocytes.

A tissue inhibitor of metalloproteinases (TIMP)-1 was isolated from human polymorphonuclear leukocytes (PMNL) in a complex with latent 95-kDa gelatinase (matrixmetalloproteinase, MMP-9). It was separated from the enzyme by gel filtration in the presence of SDS. Using a competitive ELISA procedure, we determined that 10% of the isolated gelatinase was complexed with TIMP-1. The presence of the inhibitor in isolated PMNL could also be demonstrated by indirect immunofluorescence using a specific antibody against TIMP-1. Cellular mRNA was isolated from PMNL, which were highly purified by separation via formylMet-Leu-Pro-stimulated chemotactic migration in a Boyden chamber. Using reverse-transcription PCR and Northern blotting, TIMP-1 mRNA was shown to be present in PMNL, suggesting that these cells are also capable of synthesizing TIMP-1.

Amino Acid Sequence↗

A sandwich enzyme immunoassay for the determination of neutrophil lipocalin in body fluids.

Human neutrophil lipocalin was purified from human buffycoat. A polyclonal antibody was obtained by immunisation of rabbits. The antibody reacted with the free lipocalin as well as with the PMNL-gelatinase bound protein. This antibody was used to establish a sensitive sandwich-ELISA for the determination of the protein in body fluids using the biotin/streptavidin system. The mean intra-assay C.V. was 2.3% and the mean inter-assay C.V. 6.7%. The recovery in human plasma was determined to be 98.8%. The ELISA allowed the determination of the protein in the concentration range 0.2-25 micrograms/l. Measurement of the neutrophil lipocalin concentration showed that human plasma of healthy donors contained 9.7 +/- 81 micrograms/l (n = 122) and that the concentrations in serum were significantly higher (P < 0.001) with 133 +/- 90 micrograms/l (n = 122). Neutrophil lipocalin was also found in the urine of healthy donors (8.1 micrograms/l; n = 9). Very high concentrations of this lipocalin were found in the synovial fluids of patients suffering from inflammatory rheumatoid arthritis (1.7 +/- 1.4 mg/l; n = 37).

Acute-Phase Proteins↗

X-ray structures of human neutrophil collagenase complexed with peptide hydroxamate and peptide thiol inhibitors. Implications for substrate binding and rational drug design.

Matrix metalloproteinases (MMPs) are a family of zinc endopeptidases involved in tissue remodeling. They have also been implicated in various disease processes including tumour invasion and joint destruction and are therefore attractive targets for inhibitor design. For rational drug design, information of inhibitor binding at the atomic level is essential. Recently, we have published the refined high-resolution crystal structure of the catalytic domain of human neutrophil collagenase (HNC) complexed with the inhibitor Pro-Leu-Gly-NHOH, which is a mimic for the unprimed (P3-P1) residues of a bound peptide substrate. We have now determined two additional HNC complexes formed with the thiol inhibitor HSCH2CH(CH2Ph)CO-L-Ala-Gly-NH2 and another hydroxamate inhibitor, HONHCOCH(iBu)CO-L-Ala-Gly-NH2, which were both refined to R-values of 0.183/0.198 at 0.240/0.225-nm resolution. The inhibitor thiol and hydroxamate groups ligand the catalytic zinc, giving rise to a slightly distorted tetrahedral and trigonal-bipyramidal coordination sphere, respectively. The thiol inhibitor diastereomer with S-configuration at the P1' residue (corresponding to an L-amino acid analog) binds to HNC. Its peptidyl moiety mimics binding of primed (P1'-P3') residues of the substrate. In combination with our first structure a continuous hexapeptide corresponding to a peptide substrate productively bound to HNC was constructed and energy-minimized. Proteolytic cleavage of this Michaelis complex is probably general base-catalyzed as proposed for thermolysin, i.e. a glutamate assists nucleophilic attack of a water molecule. Although there are many structural and mechanistic similarities to thermolysin, substrate binding to MMPs differs due to the interactions beyond S1'-P1'. While thermolysin binds substrates with a kink at P1', substrates are bound in an extended conformation in the collagenases. This property explains the tolerance of thermolysin for D-amino acid residues at the P1' position, in contrast to the collagenases. The third inhibitor, HONHCOCH(iBu)CO-L-Ala-Gly-NH2, unexpectedly binds in a different manner than anticipated from its design and binding mode in thermolysin. Its hydroxamate group obviously interacts with the catalytic zinc in a favourable bidentate manner, but in contrast its isobutyl (iBu) side chain remains outside of the S1' pocket, presumably due to severe constraints imposed by the adjacent planar hydroxamate group. Instead, the C-terminal Ala-Gly-NH2 tail adopts a bent conformation and inserts into this S1' pocket, presumably in a non-optimized manner. Both the isobutyl side chain and the C-terminal peptide tail could be replaced by other, better fitting groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Cloning and expression of human neutrophil lipocalin cDNA derived from bone marrow and ovarian cancer cells.

Human neutrophil lipocalin (HNL) cDNA was amplified by PCR technology in combination with deoxyinosine containing oligonucleotides for cloning, sequencing and production of the recombinant protein in E. coli. The primers were targeted to the corresponding DNA backtranslate of the mature protein resulting in a PCR amplified 534 bp cDNA from different reverse transcripts of ovarian cancer cell line and bone marrow cell mRNAs. Sequence analysis revealed that two different cDNAs from ovarian cancer and bone marrow cells could be obtained. Cloning and expression of HNL cDNAs were performed in E. coli strain HMS 174 [DE3] using the pET system yielding in two recombinant proteins with a molecular weight of 21 kDa which is consistent with an 178 amino acid residues containing sequence of the mature HNL protein. N-terminal amino acid sequence analysis of the expression products showed an identical polypeptide sequence missing the E. coli processed starting methionine.

Acute-Phase Proteins↗

Interleukin-8 synthesis and the onset of labor.

OBJECTIVE: To examine the role of cytokines in cervical dilation. METHODS: In 55 patients undergoing cesarean delivery, we took samples from the lower uterine segment, the decidua, and the membranes. We determined the concentrations of interleukin (IL)-2, IL-8, tumor necrosis factor-alpha, matrix metalloproteinase (MMP)-8, and MMP-9 in the different tissues. RESULTS: Depending on the state of labor, we observed a significant increase (P < .001) in IL-8 concentrations in the lower uterine segment. The leukocyte enzymes MMP-8 and MMP-9 were highly significantly correlated with the IL-8 concentrations. CONCLUSION: Interleukin-8 is critically involved in the process of parturition in humans. Interleukin-8 concentrations in the myometrium, decidua, and membranes correlated strongly with the observed MMP-8 and MMP-9 concentrations.

Cervix Uteri↗

Assay of matrix metalloproteases types 8 and 9 by ELISA in human breast cancer.

Results from model tumour systems suggest that either increased levels of certain metalloproteases (MMPs) or decreased levels of their inhibitors correlate with metastatic potential. In this study, levels of two MMPs, i.e. MMP-8 and -9, and their inhibitor tissue inhibitor of metalloprotease type 1 (TIMP-1) were measured by enzyme-linked immunosorbent assay in human breast tumours. Levels of MMP-8 and -9 correlated significantly with each other, but neither MMP correlated with urokinase plasminogen activator. Levels of both MMP-8 and -9 were also significantly related to levels of TIMP-1. In contrast, neither MMP correlated with plasminogen activator inhibitor. No relationship was found between MMP-8, MMP-9 or TIMP-1 and either tumour size or metastasis to axillary nodes. MMP-8 and -9 levels were inversely related to levels of oestrogen receptors. MMP-8 but not MMP-9 levels were also inversely correlated with progesterone receptor levels. It is concluded that the assay for MMP-8 and -9 described here will permit the evaluation of these proteases as prognostic markers in cancer.

Biomarkers, Tumor↗

Biochemical events in cervical ripening dilatation during pregnancy and parturition.

In specimens taken from the posterior lip of the cervix uteri we determined the collagenase activity and the glycosaminoglycan concentration. In biopsies obtained from the lower uterine segment during cesarian section we measured cytokines (IL-8, IL-2, TNF alpha) and matrix metalloproteinases (MMP-8, MMP-9). We found that the release of collagenases is critically involved in the process of cervical dilatation. The glycosaminoglycan concentration increases during pregnancy and shows remarkable changes of the distribution patterns of the different glycosaminoglycans. The parturition is characterized by a dramatic loss of most of the glycosaminoglycans. Furthermore, the IL-8 shows a close correlation to the clinical feature of cervical ripening and is closely associated with the release of MMP-8 and MMP-9. Summarizing the process of cervical maturation and dilatation is a complex enzymatic controlled process with substantial remodelling of the cervical extracellular matrix. The cytokines IL-8 seems to play an essential role in triggering the process of cervical dilatation.

Biopsy↗

Cellular source, activation and inhibition of dental plaque collagenase.

Dental plaque is the major aetiological factor in periodontal diseases and contains several proteolytic enzymes. The origin of these proteinases is, however, poorly studied. This study was undertaken to characterize collagenase present in dental plaque of adult periodontitis patients. Vertebrate-type rather than bacterial-derived collagenase activity was detected in extracts of both supra- and subgingival dental plaque extracts of adult periodontitis patients. Dental plaque collagenase was found to exist predominantly in autoactive form. Dental plaque collagenase from periodontally healthy individuals existed in latent from. Latent dental plaque collagenase from periodontitis lesions could be activated by a 95 kD chymotrypsin-like proteinase from Treponema denticola and human leukocyte cathepsin G but not by human plasmin. Incubation of purified latent leukocyte collagenase with whole cells of Fusobacterium nucleatum, Eubacterium saburreum, Prevotella buccae and Porphyromonas gingivalis, however, did not result to the activation of the enzyme. Doxycycline in vitro inhibited dental plaque collagenase with an IC50-value of 20 microM. Dental plaque collagenase degraded more efficiently type I and II collagens than type III collagen. Western-blot analysis with specific anti-human neutrophil collagenase-antibody revealed that both in supra- and subgingival dental plaque extracts dental plaque collagenase had undergone proteolytic conversion from an 80 kD proform to a 58 kD active form which is associated with catalytic autoactivity as measured by functional collagenase assay. This reflects proteolytic activation of leukocyte collagenase in dental plaque probably by other proteases derived from potent periodontopathogenic bacteria such as T. denticola or other PMN proteases such as cathepsin G.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Selective kallikrein inhibitors alter human neutrophil elastase release during extracorporeal circulation.

Cardiopulmonary bypass causes hemorrhagic complications and initiates a biochemical and cellular "whole body inflammatory response." This study investigates whether a variety of selective inhibitors of the contact pathway of intrinsic coagulation modulate complement and neutrophil activation during simulated extracorporeal circulation. After 60 min of recirculation in the presence of the slow tight-binding boronic acid inhibitor, Bz-Pro-Phe-boroArg-OH (10.7 microM), complete inhibition of kallikrein-C1-inhibitor complex formation and marked inhibition of C1-C1-inhibitor complex formation and the release of human neutrophil elastase were observed. Arg15-aprotinin (3.1 microM), Ala357,Arg358 alpha 1-antitrypsin (2.6 microM), and soybean trypsin inhibitor (48.0 microM) either completely or partially inhibited the generation of kallikrein-C1-inhibitor complexes but were less effective inhibitors of human neutrophil elastase release. The second-order rate constants for the inhibition of kallikrein in purified systems are consistent with the order of effectiveness of the inhibitors in blocking human neutrophil elastase release in heparinized blood. Our results suggest that low-molecular-weight selective inhibitors of kallikrein may be effective agents in the attenuation of the contact-mediated inflammatory response in cardiopulmonary bypass.

Amino Acid Sequence↗

[Measuring the concentration of various plasma and placenta extract proteolytic and vascular factors in pregnant patients with HELLP syndrome, pre-/eclampsia and highly pathologic Doppler flow values].

OBJECTIVE: Impaired trophoblast invasion plays a major role in the development of preeclampsia. Therefore various factors that are involved in invasion were investigated in gestational disease. METHODS: In pregnant women with HELLP-syndrome (n = 18), pre-/eclampsia (n = 21) and highly pathological Doppler flow measurements (hpD) (n = 13), plasma and placental tissue extract concentrations of uPA, uPA-receptor, tPA, PAI-1, MMP-8, MMP-9, TIMP-1, thrombomodulin, and angiogenin were measured using ELISA. RESULTS: In all three collectives, PAI-1 plasma concentrations were significantly higher (p < 0,05) than in normal pregnancies, in patients with HELLP-syndrome, tPA and TIMP-1 plasma levels were also elevated. MMP-9 concentrations in placental tissue extracts were lower in pre-/eclampsia than in normal pregnancies. CONCLUSIONS: Impaired placental implantation and remodelling in gestational disease is reflected by changes in plasma and placental tissue extract concentrations of various factors that are involved in these processes.

Adult↗

Tissue inhibitor of metalloproteinase 1, collagenolytic and gelatinolytic activity in loose hip endoprostheses.

OBJECTIVE: To study tissue inhibitor of metalloproteinase 1 (TIMP-1) in relation to collagenolytic and gelatinolytic potential, namely dinitrophenyl-Pro-Gln-Gly-Ile-Ala-Gly-Gln-D-Arg (DNP-S) sensitive proteolytic activity, in loose total hip arthroplasty (THA) endoprostheses. METHODS: Tissue localization of TIMP-1 was investigated immunohistochemically. TIMP-1 level of the periprosthetic tissues and fluid samples from 9 loose THA endoprostheses was measured by competitive ELISA, and DNP-S sensitive collagenolytic and gelatinolytic potential was evaluated by the degradation of synthetic DNP-S and reverse phase high performance liquid chromatography. RESULTS: Immunohistochemical analysis revealed moderate to marked immunoreactivity of TIMP-1 in pseudosynovial lining cells, and weak to moderate immunoreactivity often in monocyte/macrophages, endothelial cells, and fibroblasts in both interface tissues between bone and implant and pseudocapsular tissues around the artificial joints. TIMP-1 level was low in interface tissue samples (795 +/- 203 ng/ml) compared to pseudosynovial fluid samples (2026 +/- 584 ng/ml). Degradation rate of the substrate was higher in interface tissue samples (56 +/- 6%) than in pseudocapsular tissue samples (32 +/- 4%) and pseudosynovial fluid samples (6 +/- 2%). CONCLUSION: Low TIMP-1 level combined with high percentage of degradation of synthetic substrate DNP-S leads to high collagenolytic and gelatinolytic activity in interface tissue samples. This may in part explain the weakening of periprosthetic connective tissue. Weakening combined with cyclic mechanical loading may lead to loosening of THA endoprostheses.

Aged↗

Inhibition of degranulation of polymorphonuclear leukocytes by angiogenin and its tryptic fragment.

A degranulation inhibiting protein was purified to apparent homogeneity from plasma ultrafiltrates of patients with uremia using gel-permeation chromatography, ion-exchange chromatography, affinity chromatography on blue Sepharose, and ion-exchange chromatography on a Mono S HR 5/5 fast protein liquid chromatography column. The identity of the isolated degranulation inhibiting protein with angiogenin was demonstrated by amino acid sequence determination, immunoblotting, and identical inhibitory activity effects on leukocyte degranulation. At concentrations in the nanomolar range, the protein inhibited spontaneous degranulation of polymorphonuclear leukocytes (PMNL) to 40%. The protein discharge of cells, which were preincubated with nanomolar concentrations of angiogenin and then stimulated with the chemotactic peptide formyl-norleucyl-leucyl-phenylalanyl-norleucyl-tyrosyl-leucine (FNLPNTL), was inhibited by 70%. Cellular functions such as chemotaxis, phagocytosis, and the oxidative respiratory burst were not obviously affected by angiogenin. A polyclonal antibody to human recombinant angiogenin abolished the inhibitory effect of the isolated protein upon PMNL. The same but reduced effect was induced by the disulfide C39-C92 containing tryptic angiogenin fragment L-H-G-G-S-P-W-P-P-C92-Q-Y-R-G-L-T-S-P-C39-K, indicating a new, so far unknown biologically active site of angiogenin which is different from the sites responsible for angiogenic or ribonucleolytic activity. Two synthetic peptides containing residues 83-95, one with S92 instead of C92, revealed the same inhibitory effect on the protein degranulation of PMNL as the entire tryptic fragment.

Amino Acid Sequence↗

Neutrophil collagenase (MMP-8) cleaves at the aggrecanase site E373-A374 in the interglobular domain of cartilage aggrecan.

Native and recombinant neutrophil collagenase (MMP-8) was shown to cleave at the E373-A374 'aggrecanase' site in the interglobular domain of aggrecan. The time course of digestion in vitro showed that MMP-8 cleaved initially at N341-F342, the predominant metalloproteinase site, before cleaving at the E373-A374 site. A synthetic peptide, IPENFFG, inhibited cleavage at E373-A374 but not N341-F342 in vitro, indicating that the E373-A374 sequence was a less preferred site for MMP-8 cleavage than N341-F342. IPENFFG also inhibited release of A374 RGSVI fragments from cartilage in explant culture, suggesting that a metalloproteinase cleaved at the aggrecanase site in situ. The possibility remains that 'aggrecanase' may be a metalloproteinase in cartilage.

Aggrecans↗