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Biomedical subjects

S Schulz

Publications and source records attributed to S Schulz.

At least 163 records · Page 9Linked to original sources

Insect pheromone biosynthesis: stereochemical pathway of hydroxydanaidal production from alkaloidal precursors in Creatonotos transiens (Lepidoptera, Arctiidae).

The mechanism by which the moth Creatonotos transiens produces its male pheromone, (7R)-hydroxydanaidal, from heliotrine, an alkaloidal precursor of opposite (7S) stereochemistry, was investigated. Specifically deuteriated samples of heliotrine and epiheliotrine were prepared and fed to C. transiens larvae, and the steps in the biosynthetic process were monitored by gas chromatography/mass spectrometry. These analyses indicate that heliotrine is initially epimerized to (7S)-epiheliotrine by oxidation to the corresponding ketone followed by stereospecific reduction. The order of the subsequent steps is (i) aromatization of the dihydropyrrole ring, (ii) ester hydrolysis, and (iii) oxidation of the resulting primary alcohol to the final aldehyde. The ecological implications of this insect's ability (and the inability of another moth, Utetheisa ornatrix) to use representatives of two stereochemical families of alkaloids as pheromone precursors are discussed.

Journal Article↗

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↗

Epigenetic mechanisms of drug resistance: drug-induced DNA hypermethylation and drug resistance.

In a model system employing Chinese hamster V-79 cells, the DNA synthesis inhibitor 3'-azido-3'-deoxythymidine (BW A509U, AZT) was shown to induce genome-wide DNA hypermethylation, low-frequency silencing of thymidine kinase (TK; EC 2.7.1.21) gene expression, and resistance to AZT. Twenty-four hours of exposure of V-79 cells to 150 microM AZT led to > 2-fold enhancement of genomic 5-methylcytosine levels and produced TK- epimutants at a rate approximately 43-fold above background. Such AZT-induced TK- epimutants were shown to be severely reduced in their capacity to activate AZT to its proximate antiviral form, AZT 5'-monophosphate, as compared with the TK+ parental cell line from which they were derived. TK- clones isolated under these conditions were shown to be 9- to 24-fold more resistant to the cytotoxic effects of AZT than the parental TK+ cell line and showed collateral resistance to 5-fluoro-2'-deoxyuridine. Three of four TK- epimutants could be reactivated at very high frequency (8-73%) to the TK+ AZT-sensitive phenotype by 24 hr of exposure to the demethylating agent 5-azadeoxycytidine (5-azadC), implying that drug-induced DNA hypermethylation, rather than classical mutation, was involved in the original gene-silencing event in these three clones. These 5-azadC-induced TK+ revertants concomitantly regained the ability to metabolize AZT to its 5'-monophosphate. RNA slot blot analyses indicated that the four AZT-induced TK- clones expressed 8.9%, 15.6%, 17.8%, and 11.1% of the parental level of TK mRNA. The three clones that were reactivatable by 5-azadC showed reexpression of TK mRNA to levels 84.4%, 51.1%, and 80.0% that of the TK+ parental cell line. These experiments show that one potential mechanism of drug resistance involves drug-induced DNA hypermethylation and resulting transcriptional inactivation of cellular genes whose products are required for drug activation.

Animals↗

Seminal plasma factors that cause large elevations in cellular cyclic GMP are C-type natriuretic peptides.

Seminal plasma (porcine) was shown to elevate cyclic GMP in Balb/3T3 cells (235-fold), NIH/3T3, Rat-2, but not in human T84 cells. Seminal plasma and C-type natriuretic peptide (CNP) markedly elevated cyclic GMP of 293 cells stably transfected with the guanylyl cyclase-B (GC-B) receptor, but failed to elevate cyclic GMP concentrations of 293 cells stably transfected with the guanylyl cyclase-A receptor. The seminal plasma activity was analyzed by reverse-phase high performance liquid chromatography; two major fractions were obtained and the amino acid sequence of one matched that of proCNP-103. For the second peak of activity, sequence could not be obtained but the purified material bound to antibody specific for CNP. CNP concentrations in seminal plasma and seminal vesicle fluid were shown to be 2,000- and 100,000-fold greater than those found in porcine brain, respectively. Significant amounts of immunoreactive CNP also were detected in tracheal mucosa and uterus suggesting a general signaling role for the peptide. That seminal plasma CNP serves a function during fertilization was suggested by finding expression of GC-B mRNA in the uterus/oviduct and CNP-stimulatable GC-B in the intact uterus. Therefore, some or all of the GC-B receptor appears to exist on the apical membrane of uterine epithelial cells.

3T3 Cells↗

Guanylyl cyclase C is an N-linked glycoprotein receptor that accounts for multiple heat-stable enterotoxin-binding proteins in the intestine.

Guanylyl cyclase C (GC-C) is a newly discovered receptor found in the intestine, and possibly in other epithelia, that binds bacterial heat-stable enterotoxins (STa). The receptor has now been stably expressed in human embryonic 293 cells, which do not normally contain the receptor. Cyclic GMP concentrations are elevated 40-fold in response to 1 microM STa, and membranes obtained from the overproducing cells contain GC-C activity that can be stimulated about 9-fold by STa alone and an additional 1.4- to 2-fold by a combination of ATP and STa. The ATP effect does not appear to be due to enzyme activation, but instead to protection of GC-C against inactivation. Antibody raised against the carboxyl-terminal sequence of GC-C identified two major proteins (M(r) 140,000 and 160,000) in 293 cells expressing GC-C. Both proteins bound to wheat germ lectin-Sepharose, and N-glycosidase F treatment converted both forms to a single M(r) 120,000 protein, the size predicted from amino acid composition. The addition of high concentrations of tunicamycin to 293-GC-C cells also reduced the M(r) to 120,000, indicating that GC-C is an N-linked glycoprotein. When rat intestinal membranes or 293-GC-C cells were cross-linked with 125I-labeled STa, the major 125I-labeled protein complexes had M(r) ranging between 45,000 and 80,000. On immunoblots of rat intestinal membranes treated with a reducing agent, 3 major proteins of M(r) 65,000, 85,000, and 140,000 were specifically recognized by a GC-C antibody. However, under nonreducing conditions one major GC-C related protein appeared at a higher position (M(r) 230,000). Its mobility was reduced in the presence of STa, similar to rCG-C expressed in 293 cells. These data indicate that at least part of the lower M(r) STa-binding proteins found in intestinal extracts represent proteolytic products of GC-C.

Adenosine Triphosphate↗

Investigations into the haemorheological significance of postprandial and fasting hypertriglyceridaemia.

Two study designs were conceived to evaluate the rheological significance of hypertriglyceridaemia. We first investigated the course of serum- (SV) and plasma viscosity (PV) and erythrocyte aggregation in serum (SEA) and plasma (PEA) of healthy normolipidaemic individuals over 4 h after a fatty rich meal, in native material and after removal of triglyceride rich lipoproteins by centrifugation. Secondly, blood from patients with untreated hypertriglyceridaemia was investigated under fasting conditions. PEA and SEA increased in parallel with postprandial triglycerides (+135 mg dl-1), but the effect on PEA was more pronounced (+0.8 abs% increase; 2 h after the meal) as compared to SEA (+0.4 abs% increase). PV and SV increased in parallel to the same extent (+0.05 mPas). In the triglyceride poor infranatant no significant changes occurred. In fasting plasma PEA and PV were significantly lower (1.1 abs% and PV 0.04 mPas respectively) in infranatant than in native plasma, while only small differences in triglyceride (mostly VLDL) were observed. This phenomenon was barely detectable in serum samples. We conclude that triglyceride rich lipoproteins have a profound influence on haemorheological parameters, and that fibrinogen in particular, potentiates the effect of large fasting VLDL on plasma viscosity and erythrocyte aggregation.

Blood Viscosity↗

Interaction of bumetanide derivatives with hepatocellular bile acid uptake.

The loop diuretic bumetanide is an organic monocarboxylic organic anion assumed to be transported into hepatocytes by a transport system for bile acids. The structural requirements of 22 bumetanide analogues were analyzed for an interaction with bile acid uptake into isolated rat hepatocytes. Whereas bumetanide inhibited the hepatocellular uptake of [14C]cholate to the same degree as its own uptake, derivatization altered affinity and specificity and yielded compounds that selectively inhibited either cholate or taurocholate uptake or uptake of both. No correlation was found between the diuretic potency of bumetanide derivatives, reflecting the affinity to the Na(+)-K(+)-Cl- cotransporter, and their affinity to hepatic bile salt transport. Computer-aided model building combined with the calculation of potential energy maps showed a strictly amphipathic charge separation in bumetanide analogues as in bile acids. Ranking bumetanide compounds by their mean inhibitory concentration values, inhibition constants, and their type of competition, we conclude that at least three binding domains in the proteins are essential for recognition by bile acid transporters, namely two hydrophobic and an anionic side, and that for the anionic binding region a carbonyl atom in the ligands as an electron donor group is sufficient for ligand interaction.

Animals↗

Derivatives of 1-beta-D-ribofuranosylbenzimidazole 3',5'-phosphate that mimic the actions of adenosine 3',5'-phosphate (cAMP) and guanosine 3',5'-phosphate (cGMP).

A series of new analogues of 1-beta-D-ribofuranosylbenzimidazole 3',5'-phosphate (cBIMP) has been designed according to the properties predicted by the MNDO method, and synthesised from substituted benzimidazoles. Dipole vectors and HOMO and LUMO energies for each benzimidazole base were calculated by the MNDO method and the lipophilicities of the cBIMP derivatives were determined. In general, the cBIMP derivatives activate cAMP-dependent protein kinases I and II and preferentially bind to site B, especially for the type II kinase, with 2-trifluoromethyl-cBIMP and 5,6-difluoro-cBIMP exhibiting the highest site selectivity. Each cBIMP derivative can stimulate cGMP-stimulated cyclic phosphodiesterase (cGS-PDE), with 5,6-dimethyl-cBIMP being as potent as cGMP, and also inhibit cGMP-inhibited phosphodiesterase (cGI-PDE). Only the 2-trifluoromethyl-cBIMP and the Rp-phosphorothioates (cBIMPS) (equatorial P = S) were resistant to hydrolysis by cPDE. The Sp-phosphorothioates were hydrolysed slowly, if at all. In addition to exhibiting a high lipophilicity, the most active compounds for the induction of apoptosis and inhibition of proliferation were also resistant to cPDE (Sp-5,6-dichloro-cBIMPS) and/or were potent activators of cAMP-dependent protein kinase (5,6-dichloro-cBIMP).

Animals↗

Cloning and expression of guanylin. Its existence in various mammalian tissues.

Guanylin (PNTCEICAYAACTGC) is a peptide recently isolated from the intestine, the actions of which appear to be mimicked by bacterial heat-stable enterotoxins (Currie, M. G., Fok, K. F., Kato, J., Moore, R. J., Hamra, F. K., Duffin, K. L., and Smith, C. E. (1992) Proc. Natl. Acad. Sci. U.S.A. 89, 947-951). A cDNA clone encoding the peptide was isolated from a rat intestinal cDNA library using a degenerate oligonucleotide probe. The mRNA (approximately 0.8-0.9 kilobase) encoding the peptide contained an open reading frame of 115 amino acids, including an amino-terminal signal peptide. The carboxyl-terminal region of the predicted polypeptide contained a sequence identical to guanylin, but the 15-amino acid peptide likely represents an artifact of previous acetic acid extraction methods, since an aspartate residue precedes the amino-terminal proline. A lysine-lysine dipeptide bond is one likely processing site of pro-guanylin and would generate a 60-amino acid mature peptide. Other potential cleavage sites exist at single lysine and arginine residues, which could result in peptides ranging from 22 to 56 amino acids. Transfection of COS-7 cells with the guanylin cDNA resulted in the expression of a secreted protein of M(r) 10,000. The expressed proguanylin failed to elevate cyclic GMP concentrations in human colonic T84 cells, but acetic acid treatment of pro-guanylin activated it and resulted in large elevations of cyclic GMP. Guanylin mRNA was prevalent in rat intestine but was also found in low abundance in adrenal gland, kidney, and uterus/oviduct. Guanylyl cyclase C, the apparent guanylin receptor, was found in abundant amounts in the intestine by Northern analysis, and by the polymerase chain reaction or cDNA cloning it was also found in adrenal gland, airway epithelial cells, brain, and olfactory and tracheal mucosa. Therefore, the ligand and apparent receptor (guanylyl cyclase C) both originate from mammalian genes, and are expressed in various mammalian tissues.

Amino Acid Sequence↗

Analysis of the functional role of cGMP-dependent protein kinase in intact human platelets using a specific activator 8-para-chlorophenylthio-cGMP.

8-(p-Chlorophenylthio)-cGMP (8-pCPT-cGMP) and 8-bromo-cGMP were compared with respect to their chemical and biological properties in order to evaluate their potential as selective activators of cGMP-dependent protein kinase (cGMP-PK; EC 2.7.1.37) in intact human platelets. 8-pCPT-cGMP, 8-Br-cGMP and cGMP were shown to be potent and selective activators of purified bovine lung cGMP-PK and of cGMP-PK present in human platelet membranes when compared with the activation of cAMP-dependent protein kinase (cAMP-PK; EC 2.7.1.37). 8-pCPT-cGMP was not hydrolysed by the purified cGMP-stimulated phosphodiesterase (cGS-PDE), cGMP-inhibited phosphodiesterase (cGI-PDE) and Ca(2+)-calmodulin-dependent phosphodiesterase (CaM-PDE), whereas cGMP and, to a lesser extent, 8-Br-cGMP were hydrolysed by all three types of 3',5' cyclic nucleotide phosphodiesterases (EC 3.1.4.17) examined. Also, 8-pCPT-cGMP was not hydrolysed by a human platelet homogenate which contains a high level of the cGMP-specific cGMP-binding phosphodiesterase (cGB-PDE). Additionally, 8-pCPT-cGMP did not activate the cGS-PDE or inhibit the cGI-PDE, whereas half-maximal inhibition of cGI-PDE occurred at 8 microM 8-Br-cGMP. The apparent lipophilicity of 8-pCPT-cGMP was higher than that of 8-Br-cGMP. Extracellular application of 8-pCPT-cGMP to intact human platelets reproduced the pattern of protein phosphorylation induced by sodium nitroprusside (SNP), a cGMP-elevating inhibitor of platelet activation. Quantitatively, 8-pCPT-cGMP was more effective than 8-Br-cGMP in inducing phosphorylation of the 46/50 kDa vasodilator-stimulated phosphoprotein, a major substrate of cGMP-PK in intact platelets. As observed with SNP, pretreatment of human platelets with 8-pCPT-cGMP prevented the aggregation induced by thrombin. The results suggest that 8-pCPT-cGMP is a very potent and selective activator of cGMP-PK in cell extracts and in intact human platelets and, in this respect, is superior to 8-Br-cGMP and other cGMP analogs used for intact cell studies. The data also suggest that inhibition of platelet activation in intact human platelets by nitrovasodilators is mediated by cGMP-PK.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Mechanisms of cell growth inhibition and cell cycle arrest in human colonic adenocarcinoma cells by dehydroepiandrosterone: role of isoprenoid biosynthesis.

We have previously demonstrated that the chemopreventive agent dehydroepiandrosterone (DHEA) inhibits the isoprenylation of cellular proteins by depletion of endogenous mevalonate. We now report that treatment of HT-29 SF human colonic adenocarcinoma cells with DHEA at concentrations ranging from 12.5 to 200 microM for up to 72 h inhibited growth and arrested cells in the G1 phase of the cell cycle in a time- and dose-dependent manner. Exposure to 25 or 50 microM DHEA also transiently delayed cells in G2M phase after 48 h. Addition of mevalonic acid partially overcame both the growth and cell cycle effects of 25 microM DHEA in the initial 48 h. During prolonged exposure (72 h), the addition of mevalonic acid as well as cholesterol was required to reconstitute cell cycle progression. This suggests that the depletion of endogenous mevalonate and other isoprenoids is involved in DHEA-mediated growth inhibition and cell cycle arrest.

Adenocarcinoma↗

Helminthiasis and cultural change in the Peruvian rainforest.

The objective of this study was to identify the impact of cultural and ecological change on intestinal helminth infections in traditional indigenous communities in the Peruvian rainforest and to identify the ways of transmission of helminth eggs. A remote indigenous settlement was compared with a more developed mestizo town. Stool specimens as well as soil, dust, air and water were examined for Ascaris and Trichuris eggs. A significantly lower infection intensity of Ascaris and Trichuris could be demonstrated for the traditional Indian community. Here the hygienic conditions were found to be better than in the town. The mestizo teacher and his family, who had come from the town to the Indian settlement, showed poorer hygienic standards and higher levels of Ascaris and Trichuris egg excretion than the Indian dwellers. The distribution of Ascaris and Trichuris eggs in the soil, house dust and in the air suggests that the contaminated dust from defaecation sites was distributed through the whole community by feet, animals (chickens) and wind. It was observed that many traditional habits that contributed to the good hygiene of the native population were being abandoned in the process of cultural change.

Animals↗

Soil contamination with Ascaris lumbricoides eggs as an indicator of environmental hygiene in urban areas of north-east Brazil.

The objective of this study was to detect the pathways of transmission of Ascaris lumbricoides eggs in low-income households of two Brazilian cities. An inexpensive flotation technique for egg isolation was applied for the determination of soil contamination in 227 households. The median contamination levels were 0.8 (indoor), 0.3 (backyard) and 0.6 (defaecation site) eggs per gram soil. The contamination levels showed no significant correlation with the presence or quality of latrines or flush toilets. Houses with flush toilets were found to be sources of faecal contamination of the neighbourhood due to the absence of an adequate sewage system. Households with small children were more often contaminated than those without. The keeping of pigs was correlated with an increased yard contamination. The faecal egg excretion showed a significant correlation with the soil contamination in the backyard. Embryonated eggs, which represent the 'older' eggs, constituted 37% of all eggs. In the dry season significantly fewer Ascaris eggs were found in the soil than during the rainy season. The usefulness of the soil contamination with Ascaris lumbricoides eggs as an indicator of the efficacy of hygiene programmes is discussed.

Animals↗

Inhibition of protein isoprenylation and p21ras membrane association by dehydroepiandrosterone in human colonic adenocarcinoma cells in vitro.

Treatment of mice and rats with the adrenal steroid, dehydroepiandrosterone (DHEA), protects against spontaneous and chemically induced tumors. The mechanism of the chemopreventive action of DHEA, however, remains uncertain. DHEA has been reported to inhibit cholesterol biosynthesis. Mevalonic acid constitutes the basic precursor not only for cholesterol but also for a variety of nonsterol isoprenoids involved in cell growth. Certain of these nonsterol isoprenoids are utilized for posttranslational modification of proteins including p21ras. We therefore investigated the effects of DHEA upon protein isoprenylation. Twenty-four-h exposure of HT-29 SF human colonic adenocarcinoma cells to 50 microM DHEA was associated with significant incorporation of products of [3H]mevalonate metabolism into several size classes of cellular proteins. The pattern of incorporation was similar to that obtained after treatment with 25 microM lovastatin, a specific 3-hydroxy-3-methyl-glutaryl-CoA reductase inhibitor. Very little incorporation of label from [3H]mevalonate was observed in untreated cells. This suggests that [3H]mevalonate gains entrance to isoprenylation sites after treatment with DHEA or lovastatin because of depletion of endogenous mevalonate and subsequent inhibition of protein isoprenylation. Isoprenylation plays a critical role in promoting the association of p21ras with the cell membrane. Posttranslational processing and membrane association of p21ras were both found to be inhibited by DHEA. Thus, it is possible that the inhibition of isoprenylation of p21ras and other cellular proteins by DHEA may contribute to its anti-cancer effects.

Adenocarcinoma↗

Nuclear grading of renal cell carcinomas--is morphometry necessary?

Comparative investigations of subjective with objective nuclear grading methods of renal cell carcinomas are almost completely lacking. Therefore, we graded 94 cases of this carcinomas by a simple, subjective microscopical estimation as well as by a morphogenetic measurement of nuclear area. Both procedures proved prognostically useful, but the best results were achieved by morphometry. By this method three prognostic groups of renal cell carcinoma were found, provided that the borderlines were drawn at 28 microns 2 and 60 microns 2, respectively. Particularly favourable and unfavourable cases could be separated from average ones, if the means and standard deviations of both the nuclear areas and the diameters were evaluated. Overall, morphometric nuclear analyses are highly desirable, if, for example, morphological data are to be used in the context of prognostic or therapeutic studies on renal cell carcinoma. However, there is a broad distribution of the values for individual cases so that, tumour-biologically, no exact demarcation of prognostically different groups can be expected.

Adult↗

Incidence of adhesions following thermal tissue damage.

Coagulation and vaporization of tissue are techniques applied in pelviscopic surgery in order to achieve hemostasis as well as cut and destroy endometriotic implants. An animal experimental study was devised to show if there is a difference in the incidence of adhesions after vaporization of equal-sized areas of the anterior abdominal wall of the rat compared to coagulation of equal-sized areas. A similar depth of the lesions was achieved by repeating the vaporization procedure. The rate of adhesions was significantly lower (P less than 0.001, Chi2-test) post-coagulation, using a biopolar high frequency current or post-endocoagulation than post-vaporization. The surface vaporization of tissue, for example endometriotic implants, as produced by laser is to be viewed critically as regards the higher incidence of adhesions after vaporization compared with coagulation.

Abdominal Muscles↗