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Biomedical subjects

K Schmid

Publications and source records attributed to K Schmid.

At least 163 records · Page 9Linked to original sources

Changes in the connective tissue proteins, glycosaminoglycans and calcium in the arteries of the cynomolgus monkey during atherosclerotic induction and regression.

The chemical composition of the aorta, carotid, coronary and cerebral arteries of the cynomolgus monkey was determined during the induction and 'regression' of atherosclerosis. The feeding of a 2% cholesterol and 10% butter diet for 6 months resulted in extensive and severe atherosclerosis involving the aorta, carotid and coronary arteries. The involvement of these vessels was reflected by increases in arterial weight and chemical content of cholesterol, collagen, elastin, glycosaminoglycans (GAGs) and calcium. The cerebral arteries, which showed no atherosclerotic involvement, likewise showed no significant changes in weight and composition. During the 12-month regression period marked changes in the chemical composition of the involved arteries occurred and these included further increases in the collagen, GAG and calcium content of the vessels and decreases in the free and esterified cholesterol content. These changes were consistent with the gross and microscopic findings which revealed that during regression the pre-established lesions had not decreased in size but had become more fibrotic and calcified while the number of foam cells and amount of lipid contained in the lesion had decreased. During induction and regression, much of the cholesterol contained in the involved vessels appeared to be present in a crystalline form as indicated by the appearance of cholesterol clefts in the lesions. Aortic collagen was not altered with respect to amino acid composition and behavior in acrylamide gels throughout the study. However, elastin prepared by hot alkali treatment from diseased vessels, showed minor changes in amino acids during induction and marked changes during regression presumably due to the binding of glycoproteins to the elastin. The GAG composition of the involved arteries did not change during induction, whereas during regression the percent dermatan sulfate increased while the percent of heparan sulfate decreased. The over-all findings are consistent with the concept that the interaction of the connective tissue proteins with the GAGs, lipoproteins and calcium of the artery plays an important role in the development and regression of advanced atherosclerotic disease.

Animals↗

An electronic device for accurate quantification of neuronal mass activity based on a digital integration method.

Quantification of different kinds of neuronal mass activity was performed using an integrative method. For this purpose an electronic device was designed and constructed which is based on a fully digital approach. High precision of the method and an easy way to interface with a digital computer are the advantages of this strategy when compared to other techniques. Performance of quantification and the possibility of the universal use of the device are demonstrated by two examples. (1) Quantitative analysis of whole nerve bundle activity is demonstrated in the case of phrenic nerve mass activity. (2) The usefulness of the digital integrator is further verified in quantification of theta waves of the human EEG as a rather different field of application. In addition, the device is valuable as a tool for the analysis of EMGs. The described digital integrator has many advantages compared to conventional analog integrators, such as autorange feature, very high dynamic range, excellent long-term stability, in principle unlimited integration times and interface capability to a digital computer; it avoids all problems associated with the application of high-impedance integrator operational amplifiers.

Electroencephalography↗

Characterization of the B-chain of human plasma alpha 2HS-glycoprotein. The complete amino acid sequence and primary structure of its heteroglycan.

alpha 2HS-Glycoprotein, a normal human plasma protein, was recently shown to consist of two polypeptide chains. In the present study, we have separated these two chains from one another and have elucidated the complete primary structure of the B-chain. Employing automated Edman degradation, the polypeptide moiety of this chain was shown to consist of 27 amino acid residues with an unequal distribution of the neutral and charged amino acid residues. The first 20 residues are uncharged, whereas the carboxyl-terminal heptapeptide contains all charged residues. Utilizing 500-MHz 1H-NMR spectroscopy, the carbohydrate unit proved to be a trisaccharide consisting of sialic acid, galactose, and N-acetylgalactosamine O-glycosidically linked to serine (residue 6). The structure of the B-chain was found to be as follows. (formula; see text) Thus, the molecular weight of the B-chain is 3386. Evaluation of the polypeptide chain by the procedure of Chou and Fasman (Chou, P.Y., and Fasman, G.D. (1979) Adv. Enzymol. 47, 45-148) predicts that the B-chain has two beta-turns. Thereby, the carbohydrate unit which is linked to the Ser residue located in the first beta-turn appears to be directed away from the protein. The second beta-turn probably includes the Cys residue which links the B- to the A-chain. In agreement with the CD analysis, the B-chain lacks beta-conformation but possesses a short alpha-helical region.

Amino Acid Sequence↗

Tn1721-encoded tetracycline resistance: mapping of structural and regulatory genes mediating resistance.

The genes encoding inducible tetracycline resistance in Tn1721 were located in a 2.1-kilobase portion of the transposon. Using deletions and insertions, we mapped and characterized two tet genes by their mutant phenotypes. Two tetracycline-inducible polypeptides synthesized in minicells were assigned to the tet genes. The polarity of the tet genes was determined by employing a deletion and a gene fusion which altered the carboxy termini of the polypeptides. The gene responsible for resistance (tetA) encompasses 1,250 base pairs and encodes a membrane-bound protein with an apparent molecular weight of 34,000. The second gene (tetR) encompasses at least 650 base pairs and encodes a soluble 26,000-dalton protein, identified by complementation analysis as the repressor. The two adjacent genes have opposite transcriptional polarity, suggesting that the sites controlling their expression are located in the intercistronic region between tetA and tetR.

Bacterial Proteins↗

Inhibition of phospholipase A2 by gabexate mesilate, camostate and aprotinine.

Gabexate mesilate (FOY, ethyl-p-[6-guanidino-hexanoyloxy]-benzoate-methanesulfonate), camostate (N,N-dimethyl-carbamoylmethyl-4-[4-guanidinobenzoyloxy]-phenylacetate), methanesulfonate (FOYPAN) and aprotinine (Trasylol) were tested for possible inhibition of phospholipase A2. Gabexate mesilate at a concentration of 5 x 10(-4) mol/l and camostate at a concentration of 10(-3) mol/l caused a 50% reduction in enzyme activity. There was no inhibition by aprotinine at clinical doses; 40 million KIU/l were necessary to reduce phospholipase A2 activity by 20%.

Animals↗

Plasma binding of an alpha-blocking agent, nicergoline--affinity for serum albumin and native and modified alpha 1-acid glycoprotein.

The binding of nicergoline, an alpha-blocking drug, by human plasma proteins was studied using gel filtration, polyacrylamide gel electrophoresis, and equilibrium dialysis techniques. 3H-labeled nicergoline added to plasma was eluted together with two major protein fractions, one containing mainly serum albumin, the other glycoproteins such as alpha 1-acid glycoprotein (alpha 1-AG). Equilibrium dialysis experiments with pure human serum albumin and alpha 1-AG as well as with its chemically modified forms, desialylated, carboxymethylated, and both desialylated and carboxymethylated alpha 1-AG gave the following results: nicergoline has about a 4-fold higher affinity for alpha 1-AG than for serum albumin. There are two binding sites per molecule on serum albumin and one on alpha 1-AG. The binding parameters of alpha 1-AG were not significantly modified by desialylation or carboxymethylation. Only desialylated and carboxymethylated alpha 1-AG showed a decreased binding for nicergoline, suggesting conformational modifications induced by these combined treatments. The fact that desialylated alpha 1-AG keeps its affinity for nicergoline suggests the possibility of a selective introduction of this drug in cells possessing the Ashwell-type specific receptor for desialylated alpha 1-AG, for instance hepatocytes. Increased serum alpha 1-AG concentration induced by inflammatory reactions will also modify the distribution of bound nicergoline between serum albumin and alpha 1-AG and as a consequence its half-life and cell distribution.

Binding Sites↗

Culture from mouse bone marrow of a subclass of mast cells possessing a distinct chondroitin sulfate proteoglycan with glycosaminoglycans rich in N-acetylgalactosamine-4,6-disulfate.

A differentiated population of cells with metachromatically staining granules and surface IgE receptors was obtained from mouse bone marrow cultured for 2 weeks in the presence of conditioned medium derived from concanavalin A-stimulated splenocytes. The cells were found to incorporate large amounts of [35S]sulfate into an intracellular 35S-labeled proteoglycan of Mr approximately 200,000 containing a maximum of seven glycosaminoglycan side chains (Mr = 25,000). After chondroitinase ABC treatment of density gradient-purified [3H] serine-labeled proteoglycan, the resulting core was Mr approximately 26,000 as assessed by gel filtration. Two-dimensional cellulose acetate electrophoresis of beta-eliminated 35S-labeled glycosaminoglycan revealed a single type of glycosaminoglycan that migrated at the position of oversulfated chondroitin sulfate E from squid cartilage. Chondroitinase ABC degradation of the 35S-labeled glycosaminoglycan yielded two cleavage products in approximately equal molar amounts which co-migrated in both descending paper chromatography and high voltage paper electrophoresis with a monosulfated disaccharide, 2-acetamido-2-deoxy-3-O-(beta-D-gluco-4-enepyranosyluronic acid)-4-O-sulfo-D-galactose, and a disulfated disaccharide, 2-acetamido-2-deoxy-3-O-(beta-D-gluco-4-enepyranosyluronic acid)-4-6-di-O-sulfo-D-galactose. The release of some free [35S]sulfate from the oversulfated disaccharide with either chondro-4-sulfatase or chondro-6-sulfatase and the complete desulfation by their combined action established that the oversulfated disaccharide contained N-acetylgalactosamine-4,6-disulfate. The 35S]labeled proteoglycan of these unique IgE receptor-bearing and histamine-containing cells, therefore, is composed of chondroitin sulfate E rather than heparin glycosaminoglycan, and thus is the first identification of such an intracellular localized proteoglycan in a mammalian cell.

Acetylgalactosamine↗

The distribution of the glycosaminoglycans in the anatomic components of the lung and the changes in concentration of these macromolecules during development and aging.

The glycosaminoglycans of the normal human and bovine lungs and of the major structural components of these organs (pleura, 'alveoli', peripheral and central bronchi, arteries and veins) were investigated. To carry out this study, a micromethod for the separation and quantitative determination of these macromolecules, namely two-dimensional electrophoresis on cellulose acetate plates, was employed. This procedure made it possible to measure the content of each glycosaminoglycan present in the mentioned anatomic components. In the human lung the distribution of the glycosaminoglycans varies considerably from one component to another: dermatan sulfate was the predominant mucopolysaccharide of the pleura, chondroitin 6-sulfate that of the central bronchi, and heparan sulfate and chondroitin sulfate those of the alveoli. Heparin and keratan sulfate were not detected in any of the structural components. Significant changes in the mucopolysaccharide levels were found during maturation and aging. Further age-related changes were noted between 22 and 39 years. In the bovine lung significant changes in the glycosaminoglycan levels were also observed during growth and aging. Heparin appeared in the lung at an age between 1 and 16 months. Similarities and differences in the total contents and compositions of the glycosaminoglycans between the human and bovine lung were noted.

Adolescent↗

Purification and partial characterization of a protein from cancer ascites fluid which stimulates the resorption of bone explants in vitro.

A protein capable of stimulating bone resorption in vitro has been purified approximately 1250-fold from cancer ascites fluid. Purification was accomplished employing successive fractionation with ammonium sulfate, ion exchange, and Cibacron blue affinity chromatography, isoelectric focusing, and selective adsorption on hydroxylapatite. The bone-resorptive protein obtained by this procedure appeared homogeneous in polyacrylamide gels at pH 9.5, migrating with the mobility of an alpha 2-globulin, and in sodium dodecyl sulfate polyacrylamide gels from which an apparent molecular weight of 43,000 was calculated. The amino acid composition of the bone-resorptive protein distinguished itself by the absence of methionine and by its relatively high content of glycine (17%) and proline (11%). Furthermore, the protein possesses a single NH2-terminal amino acid residue (glycine). The ascites protein was found to contain 19% carbohydrate by weight including a high content of sialic acid (15 residues/mol) as compared to the other sugars (27 residues/mol). As to its biological properties, the homogeneous ascites glycoprotein proved to be as potent as parathyroid hormone in its ability to stimulate bone resorption in vitro.

Adult↗

A method to evaluate the biosynthesis of glycosaminoglycans by the aorta of Cynomolgus monkey.

The biosynthesis of the glycosaminoglycans (GAGs) was investigated in vitro in the aortic tissue of the Cynomolgus monkey incubated with [14C]glucosamine. With the use of a new micromethod, it was possible to quantify the glycosaminoglycans and their radioactive distribution in the aortic tissue and incubation medium. Labeled and nonlabeled chondroitin 6-sulfate, dermatan sulfate, heparan sulfate and hyaluronic acid were measured. Since the sensitivity of this procedure is between 5 and 20 micrograms of GAGs, as little as 5 mg of dry defatted aortic tissue is sufficient for chemical and radioactive analyses.

Animals↗

Phosphoenolpyruvate-dependent phosphotransferase system enzyme III and plasmid-encoded sucrose transport in Escherichia coli K-12.

The phosphoenolpyruvate-dependent carbohydrate:phosphotransferase system enzyme IISCR, specific for and regulated by sucrose, was analyzed in derivatives of Escherichia coli K-12 carrying the sucrose plasmid pUR404. Enzyme IIScr, coded for by gene scrA of the plasmid, depended for its transport and phosphorylation activity directly on the phosphotransferase system enzyme IIIGlc, Scr, coded for by the chromosomal gene crr.

Biological Transport↗

Plasmid-mediated uptake and metabolism of sucrose by Escherichia coli K-12.

The conjugative plasmid pUR400 determines tetracycline resistance and enables cells of Escherichia coli K-12 to utilize sucrose as the sole carbon source. Three types of mutants affecting sucrose metabolism were derived from pUR400. One type lacked a specific transport system (srcA); another lacked sucrose-6-phosphate hydrolase (scrB); and the third, a regulatory mutant, expressed both of these functions constitutively (scrR). In a strain harboring pUR400, both transport and sucrose-6-phosphate hydrolase were inducible by fructose, sucrose, and raffinose; if a scrB mutant was used, fructose was the only inducer. These data suggested that fructose or a derivative acted as an endogenous inducer. Sucrose transport and sucrose-6-phosphate hydrolase were subject to catabolite repression; these two functions were not expressed in an E. coli host (of pUR400) deficient in the adenosine 3-,5'-phosphate receptor protein. Sucrose uptake (apparent Km = 10 microM) was dependent on the scrA gene product and on the phosphoenolpyruvate-dependent sugar:phosphotransferase system (PTS) of the host. The product of sucrose uptake (via group translocation) was identified as sucrose-6-phosphate, phosphorylated at C6 of the glucose moiety. Intracellular sucrose-6-phosphate hydrolase catalyzed the hydrolysis of sucrose-6-phosphate (Km = 0.17 mM), sucrose (Km = 60 mM), and raffinose (Km = 150 mM). The active enzyme was shown to be a dimer of Mr 110,000.

Chromosomes, Bacterial↗