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Biomedical subjects

W W Schulz

Publications and source records attributed to W W Schulz.

13 recordsLinked to original sources

Harlequin ichthyosis: an ultrastructural study.

The clinical, electron microscopic, and freeze-fracture features of the skin of a harlequin fetus are described. Ultrastructural findings included large, concentric lamellar bodies, focal absence of intercellular stratum corneum lipid, and an increase in the size of desmosomes and the number of tight junctions. Although the cause of this genodermatosis is unknown, these features may partially explain the marked thickening of stratum corneum that characterizes this disorder.

Adult↗

Outer membrane ultrastructure explains the limited antigenicity of virulent Treponema pallidum.

Freeze fracture and deep etching were used to investigate the ultrastructural basis for the observation that anti-treponemal antibodies bind poorly to the surface of virulent Treponema pallidum. Fractures of T. pallidum outer membranes contained scarce, uniformly sized intramembranous particles (IMPs). IMPs on the convex faces often appeared to form linear arrays that wound in spirals about the organism. In contrast to the outer membrane, IMPs of the cytoplasmic membrane were randomly distributed, numerous, and heterogeneous in size. In Escherichia coli and T. pallidum cofractures, IMPs of the E. coli outer membranes were densely packed within the concave fracture faces, while the T. pallidum fractures were identical to the experiments lacking the E. coli internal controls. Outer membranes of two representative nonpathogenic treponemes, Treponema phagedenis biotype Reiter and Treponema denticola, contained numerous IMPs, which segregated preferentially with the concave halves. Examination of apposed replicas and deep-etched specimens indicated that at least some of the IMPs extend through the T. pallidum outer membrane and are exposed on the surface of the organism. The outer membrane of intact T. pallidum appears to contain a paucity of integral membrane proteins that can serve as targets for specific antibodies. These findings appear to represent an unusual parasitic strategy for evasion of host humoral defenses.

Antigens, Bacterial↗

Ultrastructural localization of angiotensin I-converting enzyme (EC 3.4.15.1) and neutral metalloendopeptidase (EC 3.4.24.11) in the proximal tubule of the human kidney.

We investigated the location and relative concentration in the human kidney of two enzymes involved in the processing of regulatory peptides, i.e., the angiotensin I-converting enzyme (ACE) and the neutral metalloendopeptidase 24.11 (NEP). Antibodies raised against these purified human kidney enzymes were used to determine their ultrastructural distribution by the immunogold procedure. Immunocytochemistry was performed on ultrathin frozen sections of fixed human kidney. Both enzymes were localized on the outside of the brush-border plasma membrane and, to a lesser extent, in vesicular organelles in the apical regions of epithelial cells in the proximal tubules. In addition, moderate amounts of NEP and some ACE were detected on the basal infoldings. No NEP or ACE was found in the distal tubules. Gold particles on the brush-border of proximal tubular epithelial cells were quantified with a computer based morphometry system. The results indicated about equal numbers of accessible antigenic sites for NEP and ACE on the brush-border at concentrations of antisera which yielded optimal labeling. The prominent localization of ACE and NEP on the brush-border membranes of proximal tubular epithelium suggests that these enzymes in the proximal tubules are involved in the cleavage of plasma-derived peptides after glomerular filtration.

Adult↗

Neutral endopeptidase 24.11 in human neutrophils: cleavage of chemotactic peptide.

Membrane metallo-endopeptidase (NEP; neutral endopeptidase, kidney-brush-border neutral proteinase, enkephalinase, EC 3.4.24.11) cleaves peptides at the amino side of hydrophobic amino acids. While the enzyme is known to be in organs such as kidney and brain, we found it in human neutrophils. These cells cleaved the NEP substrate glutaryl (Glut)-Ala-Ala-Phe-(4-methoxynaphthylamine) (Glut-Ala-Ala-Phe-MNA) at a rate of 9.5 nmol X hr-1 per 10(6) cells, and phosphoramidon (1 microM) inhibited the hydrolysis by 90%. Intact neutrophils from donors who smoked had NEP activities about twice that of nonsmokers. Subcellular fractionation and sucrose density gradient centrifugation of lysed neutrophils showed that most of the NEP activity was membrane bound. A washed membrane fraction from human neutrophils rapidly cleaved 0.5 mM Glut-Ala-Ala-Phe-MNA (96 nmol X min-1 X mg-1) and the hydrolysis was inhibited by phosphoramidon and by specific antiserum to human renal NEP. The washed membrane fraction also rapidly cleaved 0.1 mM bradykinin (34 nmol X min-1 mg-1) and 0.1 mM fMet-Leu-Phe (49 nmol X min-1 X mg-1). The membrane-bound enzyme cleaved the peptide substrates at the same site as the homogeneous human renal NEP, and phosphoramidon and thiorphan inhibited the hydrolysis. Kinetic studies with pure human renal NEP showed that the chemotactic peptide fMet-Leu-Phe was one of the best biologically active substrates (Km, 59 X 10(-6) M; kcat, 3654 min-1). Immunocytochemistry at the light microscopic level revealed a high concentration of NEP on the cell membrane of neutrophils. This was confirmed with electron microscopy using the immunogold technique on ultrathin cryosections. These studies indicate that NEP in neutrophils may have important functions in inflammation and chemotaxis.

Bradykinin↗

Neutral metalloendopeptidase in human lung tissue and cultured cells.

The distribution of a neutral metalloendopeptidase (NEP), or "enkephalinase," in human lung tissue and cultured cells was compared with that of angiotensin I converting enzyme (ACE). The specific activities of NEP and ACE were measured in homogenates of fetal lung tissue and in isolated airways and pulmonary vessels. NEP activity was highest in airway tissue, and ACE activity was highest in isolated vessels. Human endothelial cells from either umbilical veins or pulmonary arteries had high ACE activity (80 to 90 nmol/h/10(6) cells) but only a trace of NEP activity (0.5 to 0.6 nmol/h/10(6) cells). Fibroblasts cultured from human lungs were low in ACE but richer in NEP than cultured endothelial cells. Fibroblasts from human foreskins or caesarean section skin were the richest source of NEP activity (60 to 80 nmol/h/10(6) cells). Immunohistochemical studies confirmed the biochemical assays. As expected, ACE was localized on the luminal surface of blood vessels, with a distribution similar to that of factor VIII antigen, an endothelial marker. In contrast, NEP was localized within the alveolar septa. Cultured endothelial cells stained only weakly for NEP in contrast to cultured fibroblasts. The location of these 2 enzymes in different cells and the differences in peptide substrate specificity suggests that they act sequentially on circulating peptides or those released within microvascular beds.

Cells, Cultured↗

Neutral metalloendopeptidase in human male genital tract. Comparison to angiotensin I-converting enzyme.

High concentrations of neutral metalloendopeptidase (NEP) (enkephalinase) were found in human male genital tract immunohistochemically and by enzyme activity assays, and its distribution was compared with that of angiotensin-converting enzyme (ACE) (kininase II). Whereas the two enzymes colocalize on the luminal aspect of proximal tubular epithelium and are not found elsewhere in the nephron, their distribution in the male genitalia is different. Seminal fluid is rich in NEP and ACE, but after ultracentrifugation ACE remains soluble while NEP sediments. NEP activity is low in testicular homogenate but high in the particulate fraction of epididymides and prostates. ACE, on the other hand, is active in the particulate fraction of testes and in the soluble fraction of epididymides and prostates. Prostatic NEP had a slightly higher molecular weight than the renal NEP, which was reduced by neuraminidase in electroblotting. Testicular and seminal plasma ACE also had a slightly higher molecular weight than the purified renal enzyme (150,000), probably caused by removal of an "anchor" peptide during purification. In the prostate, NEP was found by three different immunohistochemical techniques in luminal epithelial cells and in lumina. The function of NEP in the genital tract may be related to sperm maturation and proacrosin activation.

Electrophoresis, Polyacrylamide Gel↗

Kinins and angiotensins. Angiotensin I converting enzyme (kininase II) in endothelial cells cultured from human pulmonary arteries and veins.

Human pulmonary endothelial cells were used to study the metabolism of angiotensin I and bradykinin by angiotensin I converting enzyme (kininase II; ACE). The endothelial cells cultured from pulmonary arteries and veins differed with respect to their enzyme activity and their surface structure, as viewed with scanning electron microscopy. Cells from adult pulmonary arteries had greater ACE activity than cells from either adult pulmonary veins or fetal pulmonary arteries. In addition, cells from adult pulmonary arteries exhibited more prominent surface projections than cells from veins or fetal pulmonary arteries. A brief exposure to trypsin decreased the ACE activity in cells from arteries but not in cells from veins. Possible the differences in ACE activity between these cells are related to their surface structures.

Adult↗

Sinusoidal endothelial cells from normal guinea pig liver: isolation, culture and characterization.

Guinea pig nonparenchymal hepatic cells were isolated by enzymatic digestion and subsequent separation on a 17.5% metrizamide gradient. Endothelial cell and Kupffer cell-enriched fractions were separated by centrifugal elutriation. Viability of both cell fractions was approximately 80%. Endothelial cells were cultured on a substratum of guinea pig liver collagen and 1% gelatin (1:1). Freshly isolated and cultured sinusoidal endothelial cells contained Factor VIII R:antigen, angiotensin I converting enzyme activity, and they synthesized prostaglandins characteristic of other endothelial cells. Sieve plates were identified in both freshly isolated and cultured cells. Fresh endothelial cells and Kupffer cells formed Fc receptor-mediated rosettes with IgG-opsonized sheep red blood cells, but cultured endothelial cells did not. Only Kupffer cells demonstrated Fc and C3 receptor-mediated phagocytosis. These methods for isolating and culturing sinusoidal endothelial cells should permit further functional assessment of endothelial cells and their interrelationship with other sinusoidal lining cells.

Animals↗

Kallikrein and prekallikrein on the basolateral membrane of rat kidney tubules.

Basolateral membrane (BLM) enriched fraction was isolated from homogenized rat kidney cortex by differential centrifugation. We also obtained a fraction enriched in plasma membrane (PM). The morphology of the isolated BLM fragments was studied by transmission and freeze fracture electron microscopy. The relative specific activity of Na+-K+-ATPase was enriched 7-fold, while that of marker enzymes for PM, endoplasmic reticulum, and lysosomes was lower than in the crude homogenate. There was a 10-fold difference in the ratios of activities of Na+-k+-ATPase to Mg2+-ATPase in the BLM and in the PM enriched fractions. Kallikrein activity was determined with S-2266 substrate and by radioimmunoassay of kinin released. It was low in the BLM fraction prior to adding detergent, but Triton X-100 increased the activity 12 to 16-fold. Both free trypsin and Sepharose 4B-bound insoluble trypsin increased kallikrein activity 2- to 3-fold in both the membrane-bound and soluble fractions, probably by activating a prekallikrein. The results were interpreted that the kallikrein studied originated from the distal tubular BLM.

Adenosine Triphosphatases↗