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Biomedical subjects

H Fritz

Publications and source records attributed to H Fritz.

At least 55 records · Page 3Linked to original sources

Bdellastasin, a serine protease inhibitor of the antistasin family from the medical leech (Hirudo medicinalis)--primary structure, expression in yeast, and characterisation of native and recombinant inhibitor.

We have reported earlier the isolation and amino acid composition of bdellin A from medical leech, and characterised it as an inhibitor of trypsin, plasmin and acrosin [Fritz, H., Gebhardt, M., Meister, R. & Fink, E. (1971) in Proceedings of the international research conference on proteinase inhibitors (Fritz, H. & Tschesche, H., eds) pp. 271-280, Walter de Gruyter, Berlin]. In the present study, one of several chromatographic forms of this inhibitor was isolated from a semi-pure preparation. Elucidation of its amino acid sequence revealed that bdellin A is a member of the antistasin family. Therefore, it was renamed bdellastasin to avoid confusion with bdellin B, which is another trypsin-plasmin inhibitor from the medical leech, but of the Kazal type. Furthermore, a synthetic gene of bdellastasin was constructed, and the protein expressed in Saccharomyces cerevisiae with yields of 29 mg/l. The recombinant bdellastasin was purified by hydrophobic interaction and anion-exchange chromatography. Comparison by mass spectroscopy, far-ultraviolet circular dichroism studies, sequence determination, and inhibition characteristics demonstrated the identity of recombinant and native bdellastasin. The Ki values of bdellastasin for inhibition of bovine trypsin and human plasmin are in the nanomolar range; no inhibition was detected for factor Xa, thrombin, tissue kallikrein, plasma kallikrein and chymotrypsin. Circular dichroism analyses indicated that bdellastasin is devoid of secondary-structural elements.

Animals↗

Human beta-tryptase is a ring-like tetramer with active sites facing a central pore.

Human tryptase, a mast-cell-specific serine proteinase that may be involved in causing asthma and other allergic and inflammatory disorders, is unique in two respects: it is enzymatically active only as a heparin-stabilized tetramer, and it is resistant to all known endogenous proteinase inhibitors. The 3-A crystal structure of human beta-tryptase in a complex with 4-amidinophenyl pyruvic acid shows four quasi-equivalent monomers arranged in a square flat ring of pseudo 222 symmetry. Each monomer contacts its neighbours at two different interfaces through six loop segments. These loops are located around the active site of beta-tryptase and differ considerably in length and conformation from loops of other trypsin-like proteinases. The four active centres of the tetramer are directed towards an oval central pore, restricting access for macromolecular substrates and enzyme inhibitors. Heparin chains might stabilize the complex by binding to an elongated patch of positively charged residues spanning two adjacent monomers. The nature of this unique tetrameric architecture explains many of tryptase's biochemical properties and provides a basis for the rational design of monofunctional and bifunctional tryptase inhibitors.

Amino Acid Sequence↗

B1 kinin receptor activity in pigs is associated with pre-existing infection.

Bradykinin (BK) and related kinins are potent inflammatory mediators produced during acute and chronic inflammation. The effects of these kinins are mediated via the stimulation of either a B2 or a B1 receptor. The B1 receptor is not normally present but its expression can be induced within 4 h by a variety of noxious stimuli, specifically, gram-negative bacteria or bacterial lipopolysaccharide (LPS) given to healthy animals. This study compared the cardiovascular response of healthy pigs and pigs diagnosed with a pre-existing spontaneously acquired infection to BK, a B2 receptor agonist, and des-Arg9-BK, a B1 receptor agonist. Eighty-eight percent of the animals diagnosed with an established infection based on a standardized clinical evaluation demonstrated increased sensitivity and responsiveness to des-Arg9-BK but normal responsiveness to BK and acetylcholine. In contrast, only 15% of healthy animals showed elevated responses to des-Arg9-BK. The response to des-Arg9-BK and BK in each group was characterised as B1 and B2, respectively, using the selective B1 and B2 antagonists Lys0-Leu8-des-Arg9-BK and Hoe 140, respectively. This study demonstrates the existence and function of the B1 receptor in animals with a previously acquired infection. These observations lend validity to animal experiments with LPS infusion in order to model bacterial inflammation.

Acetylcholine↗

Endogenous B1 receptor mediated hypotension produced by contact system activation in the presence of endotoxemia.

Previous studies have shown that an intravenous infusion of dextran sulfate (DXS) causes arterial hypotension via release of bradykinin (BK) and stimulation of bradykinin B2 receptors in pigs. The bradykinin B1 receptor is not physiologically present but its expression can be induced by bacterial lipopolysaccharide (LPS). This study was designed to assess the relative roles of bradykinin B2 and B1 receptors in the hypotensive response produced by DXS in LPS-treated pigs. In LPS-treated pigs a continuous infusion of DXS produced a progressive drop in blood pressure that peaked at approximately 30 min after onset of the infusion and returned to baseline after another 30 min. In animals receiving the selective B2 receptor antagonist Hoe-140 a significant attenuation of the peak fall in blood pressure to DXS was observed. In pigs treated with Hoe-140 and the selective B1 receptor antagonist CP-0298 (Lys(0)-Leu(8)-des-Arg(9)-bradykinin) DXS infusion had no effect on blood pressure. This is the first demonstration in vivo that following activation of the contact system both B2 and B1 receptors are involved in the resulting hypotensive response. This would be consistent with the production of BK (which stimulates B2 receptors) that is subsequently converted to the biologically active metabolite des-Arg(9)-BK in sufficient concentrations to activate B 1 receptors. The significance of these observations to pathophysiology remains to be determined.

Adrenergic beta-Antagonists↗

Role of fiberoptic bronchoscopy in conjunction with the use of double-lumen tubes for thoracic anesthesia: a prospective study.

BACKGROUND: Fiberoptic bronchoscopy has been recommended to verify the position of double-lumen tubes (DLT), but this remains controversial. The authors studied the role of bronchoscopy for placing and monitoring right- and left-sided DLTs after blind intubation and after positioning the patient. METHODS: Two hundred patients having thoracic surgery requiring DLT insertion were prospectively studied. "Blind" tracheal intubations were done with 163 left-sided and 37 right-sided disposable polyvinyl chloride Robertshaw tubes. Bronchoscopy was performed by a different anesthesiologist after intubation and conventional clinical verification of correct placement and after patient positioning for thoracotomy. A DLT was considered malpositioned when it had to be moved >0.5 cm to correct its position. Critical malpositions were those that might have affected patient safety or influenced the surgical procedure if left uncorrected. RESULTS: After "blind" DLT intubation, clinical evidence of malpositioning was found in 28 patients. This was confirmed by fiberoptic assessment. In 172 patients in whom placement was judged correct by clinical assessment, malpositioning was detected by bronchoscopy in 79 cases, 25 of which were critical. After patient positioning, DLTs were found to be displaced in 93 patients, 48 of which were critical. Right-sided DLTs were significantly more likely to be malpositioned than were left-sided DLTs. Two complications were related to unsatisfactory lung separation in the 200 patients studied. CONCLUSIONS: After blind intubation and patient positioning, more than one third of DLTs required repositioning. Routine bronchoscopy is therefore recommended after intubation and after patient positioning.

Adolescent↗

A hirudin-sensitive, growth-related proteinase from human fibroblasts.

We have identified a hirudin-sensitive proteinase from human fibroblasts. Inhibition of this enzyme results in partial inhibition of cell growth in culture. The enzyme has a molecular weight of about 38000, and can be isolated by affinity chromatography with a hirudin-agarose matrix. The enzyme is apparently not closely related to thrombin, but does show a high level of amino acid sequence homology with fragments of a protein isolated from the synovial fluid of rheumatoid arthritis patients, which acts as a mitogen for human T lymphocytes.

Amino Acid Sequence↗

Bradykinin-induced tyrosine phosphorylation of proteins in cultured human keratinocytes.

The stimulating effect of bradykinin on phosphorylation of proteins at tyrosine residues was visualized on human keratinocytes in primary culture. Keratinocytes were subjected either to short-time (30 s) or to long-time stimulation (4 h) with 200 nM bradykinin. Especially keratinocytes of the G1 phase showed bright immunofluorescence with monoclonal anti-phosphotyrosine antibody. Solubilized membrane proteins were fractionated by gel filtration and tested for tyrosine phosphorylation by ELISA. Short-time stimulation induced a broad peak with a shoulder at 90 kDa, the main peak at about 60 kDa and a second shoulder at 44 kDa. After long-time stimulation an additional distinct peak at 180 kDa appeared, phosphorylation at 90, 60 and 44 kDa was less pronounced. Tyrosine phosphorylated proteins were further characterized by SDS-polyacrylamide gel electrophoresis, Western blotting and detection by monoclonal anti-phosphotyrosine antibody. After short-time stimulation with bradykinin tyrosine phosphorylation was confined to distinct bands at 82, 76, 70, 57, 54, 48, 40 and 39 kDa and a diffuse band at 62 kDa. After long-time stimulation tyrosine phosphorylation increased for the 76 kDa band and the bands at 48 and 40 kDa became more diffuse, the 39 kDa band remained and the others disappeared. Among these proteins, MAP kinase, actin, paxillin and the EGF receptor were the most likely candidates for bradykinin-induced tyrosine phosphorylation. Therefore, these effects in keratinocytes might be associated with events related to mitosis, adhesion and variation in cell shape.

Antibodies, Monoclonal↗

Cationic Polystyrene Nanoparticles: Preparation and Characterization of a Model Drug Carrier System for Antisense Oligonucleotides

Polystyrene nanoparticles were prepared by surfactant-free emulsion polymerization using water-soluble cationic initiators to induce a positive surface charge. Reaction conditions were optimized to obtain monodisperse polymeric particles with mean diameters of 150-200 nm. The nanospheres were characterized by scanning electron microscopy, photocorrelation spectroscopy, conductometric titrations, zeta potential measurements, and investigations of their colloidal stability in different media. Sterically stabilized polymeric latexes, showing a low cytotoxicity in the concentrations required for antisense experiments, are capable of binding negatively charged oligonucleotides. The influence of pH, type of latex, and oligonucleotide modification on the adsorption characteristics was investigated. The results indicate that high attractive forces in terms of multiple electrostatic interactions are predominantly responsible for oligonucleotide binding. Comparing the experimental data with calculations based on the random sequential adsorption (RSA) model, it appears that the surface coverage at the saturation level can be considered as a monolayer of "side-on" adsorbed molecules. Oligonucleotide release can be induced by the addition of anionic surfactants or by increasing the pH of the dispersion medium. Investigations of the enzymatic degradation by micellar electrokinetic capillary chromatography (MECC) indicate a significantly enhanced stability of adsorbed oligonucleotides against nuclease attack. Copyright 1997 Academic Press. Copyright 1997Academic Press

Journal Article↗

The three-dimensional structure of recombinant leech-derived tryptase inhibitor in complex with trypsin. Implications for the structure of human mast cell tryptase and its inhibition.

The x-ray crystal structure of recombinant leech-derived tryptase inhibitor (rLDTI) has been solved to a resolution of 1.9 A in complex with porcine trypsin. The nonclassical Kazal-type inhibitor exhibits the same overall architecture as that observed in solution and in rhodniin. The complex reveals structural aspects of the mast cell proteinase tryptase. The conformation of the binding region of rLDTI suggests that tryptase has a restricted active site cleft. The basic amino terminus of rLDTI, apparently flexible from previous NMR measurements, approaches the 148-loop of trypsin. This loop has an acidic equivalent in tryptase, suggesting that the basic amino terminus could make favorable electrostatic interactions with the tryptase molecule. A series of rLDTI variants constructed to probe this hypothesis confirmed that the amino-terminal Lys-Lys sequence plays a role in inhibition of human lung tryptase but not of trypsin or chymotrypsin. The location of such an acidic surface patch is in accordance with the known low molecular weight inhibitors of tryptase.

Amino Acid Sequence↗

Structure-based design of a potent chimeric thrombin inhibitor.

Using the three-dimensional structures of thrombin and the leech-derived tryptase inhibitor (LDTI), which does not inhibit thrombin, we were able to construct three LDTI variants inhibiting thrombin. Trimming of the inhibitor reactive site loop to fit thrombin's narrow active site cleft resulted in inhibition constants (Ki) in the 10 nM concentration range; similar values were obtained by the addition of an acidic C-terminal peptide corresponding to hirudin's tail to LDTI. Combination of both modifications is additive, resulting in very strong inhibition of thrombin (Ki in the picomolar range). On the one hand, these results confirm the significance of the restricted active site cleft of thrombin in determining its high cleavage specificity; on the other, they demonstrate that sufficient binding energy at the fibrinogen recognition exosite can force thrombin to accept otherwise unfavorable residues in the active site cleft. The best inhibitor thus obtained is as effective as hirudin in plasma-based clotting assays.

Animals↗

Quail cystatin: isolation and characterisation of a new member of the cystatin family and its hypothetical interaction with cathepsin B.

Quail cystatin, a new cysteine proteinase inhibitor protein of the cystatin superfamily, was purified from egg albumen of Japanese quail Coturnix coturnix japonica. Amino acid sequencing and mass spectrometry revealed the complete 116 amino acid residue primary structure of a phosphorylated form (13,173 Da). The inhibitor has a 90% sequence identity with chicken cystatin. Its interaction with papain is rapid and tight (Ki = 4.4 pM; k(on) = 1.8x10(7) M(-1) s(-1); k(off) = 0.8x10(-4) s(-1)) and very similar to that of chicken cystatin. Surprisingly, however, cathepsin B was inhibited 15-fold more strongly by quail cystatin (Ki = 47 pM; k(on) = 19x10(7) M(-1) s(-1); k(off) = 9x10(-4) s(-1)) than by chicken cystatin (Ki = 784 pM; k(on) = 2.9x10(7) M(-1) s(-1); k(off) = 24x10(-4) s(-1)). Intuitive comparative conformational inspection of related inhibitors and of cognate enzymes suggest that: (i) the 3D structure of quail cystatin is nearly identical to that of chicken cystatin, (ii) quail cystatin can interact with cathepsin B analogous to the stefin B-papain interaction, if the 'occluding loop' of cathepsin B possesses an 'open' conformation, (iii) the greater inhibition of cathepsin B by quail cystatin compared to chicken cystatins probably arises from two additional ionic interactions between residues Arg15 and Lys112 of the inhibitor and Glu194 and Asp124 of the enzyme, respectively. The two potential salt bridges are located outside of the known contact regions between cystatins and peptidases of the papain family.

Amino Acid Sequence↗

A new structural class of serine protease inhibitors revealed by the structure of the hirustasin-kallikrein complex.

BACKGROUND: Hirustasin belongs to a class of serine protease inhibitors characterized by a well conserved pattern of cysteine residues. Unlike the closely related inhibitors, antistasin/ghilanten and guamerin, which are selective for coagulation factor Xa or neutrophil elastase, hirustasin binds specifically to tissue kallikrein. The conservation of the pattern of cysteine residues and the significant sequence homology suggest that these related inhibitors possess a similar three-dimensional structure to hirustasin. RESULTS: The crystal structure of the complex between tissue kallikrein and hirustasin was analyzed at 2.4 resolution. Hirustasin folds into a brick-like structure that is dominated by five disulfide bridges and is sparse in secondary structural elements. The cysteine residues are connected in an abab cdecde pattern that causes the polypeptide chain to fold into two similar motifs. As a hydrophobic core is absent from hirustasin the disulfide bridges maintain the tertiary structure and present the primary binding loop to the active site of the protease. The general structural topography and disulfide connectivity of hirustasin has not previously been described. CONCLUSIONS: The crystal structure of the kallikrein-hirustasin complex reveals that hirustasin differs from other serine protease inhibitors in its conformation and its disulfide bond connectivity, making it the prototype for a new class of inhibitor. The disulfide pattern shows that the structure consists of two domains, but only the C-terminal domain interacts with the protease. The disulfide pattern of the N-terminal domain is related to the pattern found in other proteins. Kallikrein recognizes hirustasin by the formation of an antiparallel beta sheet between the protease and the inhibitor. The P1 arginine binds in a deep negatively charged pocket of the enzyme. An additional pocket at the periphery of the active site accommodates the sidechain of the P4 valine.

Amino Acid Sequence↗

Tachyphylaxis of the B1 kinin receptor in porcine endotoxin shock.

Previous experiments in anesthetized pigs have demonstrated that blockade of the bradykinin B2 receptor in experimental endotoxin shock attenuates LPS-induced organ failure, lung dysfunction and mortality. Additional B1 receptor blockade in this situation seems to counteract the beneficial effects of B2 blockade. This suggests that the upregulation of B1 receptors during porcine LPS shock may be a useful mechanism of host defense. Furthermore, infusion of a B1 agonist during septic shock may be of therapeutic benefit. In order to prepare an experiment with B1 stimulation in LPS shock, we conducted a study in anesthetized pigs, in which the B1 receptor has been upregulated by infusion of bacterial lipopolysaccharide (LPS), by evaluating the effect of constant intravenous infusions of the B1 agonist des-Arg10-kallidin on the hypotensive response to bolus doses of this agonist. Following infusions of lipopolysaccharide from S. abortus equi, anesthetised pigs received repeated intra-arterial bolus injections of des-Arg10-kallidin before and during continuous infusions of this agonist in doses of 3, 10, 30 and 100 ng/kg/min. We found that all doses greater than 3 ng/kg/min produced attenuation of the hypotensive response produced by bolus administration of the B1 agonist des-Arg10-kallidin. We conclude that tachyphylaxis is an important feature to be considered in experiments with continuous administration of a B1 agonist in LPS shock.

Animals↗

Proteolytic enzymes in yolk-sac membrane of quail egg. Purification and enzymatic characterisation.

Degradation of yolk protein is essential for the early development of the avian embryo. In Japanese quail (Coturnix coturnix japonica), proteolysis in the surrounding tissue of the yolk, the yolk-sac membrane, can be inhibited by class-specific inhibitors of cysteine proteinases as well as of aspartic proteinases. Purification of the enzymes leads to one cysteine proteinase and one aspartic proteinase with an apparent molecular mass of 29 kD and 44 kD, respectively. Both enzymes were purified in a two-chain form, although a single-chain form is also present in the homogenate of yolk-sac membrane. The cysteine proteinase was identified by NH2-terminal sequence analysis as well as by kinetic studies as a new cathepsin B from quail. Like mammalian cathepsin B, this avian cathepsin B exhibits two different kinds of proteolytic activity, an endopeptidase activity and a dipeptidyl carboxypeptidase activity. Chicken egg white cystatin, a protein-aceous cysteine proteinase inhibitor, inhibits quail cathepsin B with an equilibrium dissociation constant (Ki) of 3.3 nM. Likewise the aspartic proteinase was identified as a new cathepsin D from quail. This avian cathepsin D has a different processing site to all known mammalian cathepsins D. In quail cathepsin D one NH2-termini is homologous to amino acids 211-230 in mammalian cathepsin D. This is more than 100 amino acids downstream of the mammalian processing site. Comparison of the enzymatic properties of quail and bovine cathepsin D indicate that the different processing site has no influence on the enzymatic properties.

Amino Acid Sequence↗

Oxidative autoaggression by phagocytes in human peritonitis.

In 60 abdominal exudates from patients with the diagnosis of either acute or persistent (chronic) peritonitis, indicators of phagocyte-derived oxidative systems (myeloperoxidase, chemiluminescence) and proteases (elastase) were measured. These exudates reveal a picture of maximal inflammatory activation. Both types of exudates (30 each) showed a significant influx of inflammatory cells, with the mean leucocyte count being 73,000 microL and 32,000 microL-1 respectively. Local myeloperoxidase concentrations were approximately 1000-fold greater than that of normal plasma. Spontaneous and elicitable chemiluminescence--indicators of phagocyte respiratory burst activity--were dramatically increased. In addition, levels of extracellularly released elastase (from neutrophils) were found to be up to about 1000-fold that of normal plasma values. Although most of the elastase detected in the exudates was complexed with alpha 1-proteinase inhibitor (alpha 1 PI), enzymatically active elastase could be measured in approximately 60% of the samples being investigated. As there was an excess of immunoreactive alpha 1 PI in these exudates, the free elastase activity implies that much of the alpha 1 PI was inactive, presumably subjected to oxidative destruction. Moreover, a trypsin-inhibitory activity to antigen ratio below 1 (mean = 0.81) in 75% of the purulent exudates indicated also partial proteolytic degradation of alpha 1 PI. In contrast, 16 clear exudates (no bacteria, white cell count below 500 microL-1) taken from the non-infected peritoneal cavity of patients undergoing intra-abdominal surgery revealed a similar permeability increase of the peritoneum but did not show relevant oxidative and proteolytic activity or destruction of alpha 1 PI compared with purulent specimens. Thus, only the inflammatory process of peritonitis appears to result in an overwhelming local phagocytic activity that initiates and maintains protease inhibitor consumption and/or inactivation. The tremendous oxidative potential found in purulent exudates may cause destruction in a wide variety of defence systems.

Adolescent↗

Hybrids of chicken cystatin with human kininogen domain 2 sequences exhibit novel inhibition of calpain, improved inhibition of actinidin and impaired inhibition of papain, cathepsin L and cathepsin B.

Chicken cystatin and human kininogen domain 2 are members of the cystatin superfamily of protein-type cysteine proteinase inhibitors. They show structural and functional similarities, but only human kininogen domain 2 inhibits calpain. Using recombinant chicken cystatin as a scaffold for hybrid cassette analysis, the known reactive-site regions (N-terminus, first hairpin loop and second hairpin loop) were substituted by the corresponding sequences of human kininogen domain 2 in a single and combined manner. Seven hybrids were expressed, purified to homogeneity, characterized protein-chemically, and their inhibition of papain, actinidin, human cathepsin B, human cathepsin L and calpain (80-kDa subunit of rabbit skeletal muscle calpain II and porcine erthrocyte calpain 1) was determined. Strong but temporary inhibition of calpain by chicken cystatin hybrids carrying the N-terminus alone (variant sc1-KD2) or the N-terminus together with the first hairpin loop (variant sc1/2-KD2) was observed; hybrids of the second hairpin loop (sc3-KD2, sc1/3-KD2, sc2/3-KD2, sc1/2/3-KD2) were less strong calpain inhibitors. These data indicate that the inhibiton of calpain by human kininogen domain 2 requires the correct conformation and combination of several contact sites, and suggest that the N-terminus and the first hairpin loop play a major role in this ensemble. Remarkably, hybrid sc2-KD2 exhibited 5 or 150 times stronger inhibition of actinidin compared to native chicken cystatin or to proteolytically isolated human kininogen domain 2, respectively. This indicates an important role of the first hairpin loop of cystatins in the interaction with actinidin. Along with the impaired inhibition of cathepsin L, papain, actinidin, cathepsin B and calpain by the hybrids sc1/3-KD2, sc2/3-KD2 and sc1/2/3-KD2, these results support our hypothesis that all three predicted contact regions of kininogen domain 2 contribute to binding in the active-site clefts of papain-like enzymes in a finely balanced manner.

Amino Acid Sequence↗