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Biomedical subjects

K Schmid

Publications and source records attributed to K Schmid.

At least 181 records · Page 10Linked to original sources

Purification and characterization of the two forms of human plasma alpha 2HS-glycoprotein.

The two forms of alpha 2HS-glycoprotein were purified from Cohn fraction VI of normal human plasma and characterized in terms of their major chemical and physicochemical properties. Separation of these two proteins was achieved by chromatography on DEAE-cellulose at pH 4.4 followed by gel filtration through Sephadex G-100. The isoelectric points of the disc gel electrophoretically and immunochemically homogeneous glycoproteins were found to be at 4.1 and 4.7 and their apparent molecular weights, as determined by SDS-polyacrylamide gel electrophoresis, were shown to be 51,000 and 56,000, respectively. The amino acid compositions of both proteins were very similar, although differences, particularly in the arginine and histidine contents, were noted. The amino- and carboxyl-terminal amino acids were found to be the same for both proteins and were threonine and alanine, and valine and leucine, respectively, suggesting that both forms of this protein consist of two polypeptide chains. The total carbohydrate moiety of the relatively basic form (14%) proved to be comparable to that of the relatively acidic form (13%). More important, however, the sialic acid content of the latter was higher than that of the former. These results suggest that the difference between the two forms of alpha 2HS-glycoprotein resides both in its carbohydrate and polypeptide moieties.

Amino Acids↗

Characterization of the microheterogeneity in glycoproteins by 500-MHz 1H-NMR spectroscopy of glycopeptide preparations. Application to a monofucosylated tetra-antennary glycopeptide fraction from human plasma alpha 1-acid glycoprotein.

Five hundred-MHz 1H-NMR spectroscopy was employed to study a monofucosylated tetra-antennary glycopeptide fraction which was derived from human plasma alpha 1-acid glycoprotein. This fraction was earlier judged to be homogeneous by 360-MHz 1H-NMR spectroscopic analysis (Fournet, B., Montreuil, J., Strecker, G., Dorland, L., Haverkamp, J., Vliegenthart, J. F. G., Binette, J. P., and Schmid, K. (1978) Biochemistry 17, 5206-5214). The combination of the improved resolving power and the enhanced sensitivity of the 500-MHz 1H-NMR spectrometer afforded the elucidation of a new type of microheterogeneity with regard to the position of attachment of Fuc. Three isomeric compounds were identified. The major form contains Fuc alpha-(1 leads to 3) linked to GlcNac 7 of the tetra-antennary structure, as shown earlier. The two minor compounds, representing new structures, possess Fuc attached in alpha-(1 leads to 3) linkage to GlcNAc 7' or 5'. It is thus noteworthy that this spectral technique allows elucidation of structures of very closely related carbohydrate chains in a glycopeptide mixture.

Carbohydrate Conformation↗

Direct quantitation of glycosaminoglycans in 2 mL of urine from patients with mucopolysaccharidoses.

Glycosaminoglycans in urine from patients representing the major different mucopolysaccharidoses were separated and measured by use of a procedure that requires only 2 mL of urine. The compounds were resolved by two-dimensional electrophoresis on cellulose acetate plates and made visible by staining with Alcian Blue. They were identified by co-migration with standard glycosaminoglycans, by digestion with specific glycosidases, and by specific degradation with HNO2. They were quantitated by comparing the absorbance of eluates of the stained spots to appropriate standard curves for each glycosaminoglycan. This study revealed additional findings. About half of the patients excreted small amounts of heparin. Further, the keratan sulfate in samples from Morquio's disease patients migrated differently from authentic keratan sulfate unless digested with chondroitinase ABC. Our results for these diseases are in harmony with earlier reports.

Electrophoresis, Cellulose Acetate↗

Synthesis of glycosaminoglycans by cultured rabbit smooth muscle cells.

Rabbit aortic smooth muscle cells were evaluated for their ability to synthesize and accumulate glycosaminoglycans (GAGs). Because of the sensitivity of the microtechniques utilized, it is possible to determine the specific radioactivity of the GAGs obtained after radioactive incorporation of [35S]SO4(2-) and [14C]glucosamine. Data obtained at various incubation times indicate that the distribution of the GAGs secreted by the cells into the medium is different from that retained by the cell layer. Hyaluronic acid was shown to be the most abundantly produced GAG, and much of this GAG does not appear to be incorporated into the extracellular matrix. Also, a high percentage of the total chondroitin sulfate B synthesized was secreted into the medium. On the other hand, most of the heparan sulfate and chondroitin sulfate C/A synthesized seems to be associated with the cell layer. These results are consistent with those found in whole rabbit aorta.

Animals↗

Isolation and characterization of a serine-threonine-rich galactoglycoprotein from normal human plasma.

A serine-threonine-rich galactoglycoprotein was isolated in homogeneous form from pooled normal human plasma. After precipitation of the major portion of the plasma proteins by Cohn's low temperature-low salt-ethanol procedure, the proteins and glycoproteins remaining in the supernatant solution of Cohn Fraction V were concentrated with the aid of DEAE-cellulose. Fractional elution from this ion exchange resin yielded a crude preparation of the galactoglycoprotein which was purified subsequently by gel filtration through Sephadex G-100. Homogeneity of the protein was established by several criteria of purity including disc polyacrylamide gel electrophoresis and COOH-terminal amino acid analysis. The major physicochemical constants of the macromolecule including its molecular weight of 81,000 were measured. The chemical composition of this protein was found to be unusual: the total carbohydrate moiety accounts for 76% of its weight and consists of 23% sialic acid, 23% total neutral sugar, including 20% galactose, 1% fucose, and almost equal amounts of GalNAc and GlcNAc totalling 27%. The polypeptide moiety accounting for 26% of the weight of the glycoprotein distinguishes itself by a high content of serine and threonine.

Amino Acids↗

Effects of a bone resorptive factor from human cancer ascites fluid on rat bone cell calcium and cyclic AMP.

The effects of a bone resorptive protein isolated from human cancer ascites fluid on bone cell calcium and cyclic AMP were studied with fetal rat cells. The osteoclast-activating factor increased bone cell calcium uptake at 37 degrees C and 4 degrees C with no direct effects on calcium efflux. Concentrations of the resorptive factor that increased in vitro bone resorption and cell calcium uptake had no effect on cyclic AMP. The effects of the protein on calcium uptake were not specific for bone cells, and large increases were also observed in isolated fetal rat skin cells. These studies suggest that increases in the permeability of the cell membrane to calcium are involved in the mechanism of action of the ascites fluid resorptive protein.

Animals↗

Chemical and physicochemical studies on the mineral deposits of the human atherosclerotic aorta.

The mineral deposits of the human atherosclerotic aorta were prepared by a new method characterized by the use of mild conditions. Both large and small mineral deposits were isolated from the atherosclerotic plaque and were shown to possess essentially the same chemical composition. The deposits consisted mainly of calcium apatite (71%), carbonate (9%) and contained a relatively high percentage of protein (15%). X-ray diffraction pattern analysis revealed the presence of microcrystals with an average size of approximately 0.1 micron. Electron probe analysis showed that the surface and interior of the mineral deposit had the same chemical composition. However, scanning electron microscopy revealed that the deposits were heterogeneous and consisted of five different structures: (1) individual and conglomerates of smooth-surfaced apheres consisting of spherical layers; (2) spheres consisting of spindle-like, radially arranged particles; (3) fibres forming networks and bundles which sometimes included spherical particles; (4) irregularly shaped particles with fuzzy surfaces and (5) flat plates with smooth surfaces.

Aorta↗

Immunosuppression by human plasma alpha 1-acid glycoprotein: importance of the carbohydrate moiety.

Human plasma alpha 1-acid glycoprotein (orosomucoid) and derivatives of this protein produced by sequential enzymatic cleavage of the glycosidic residue (sialic acid, galactose, N-acetylglucosamine, mannose) were tested for the ability suppress a number of immune functions of mouse spleen cells in vitro at physiological concentrations. alpha 1-Acid glycoprotein and especially the agalacto/asialo derivative suppressed (i) the mitogenic responses to concanavalin A, lipopolysaccharide, and alloantigens, (ii) antibody responses to sheep erythrocytes, and (iii) induction of cell-mediated lympholysis against allogeneic target cells. The native protein and its derivative did not inhibit the proliferation of EL-4 lymphoma cells and did not suppress the lysis of YAC-1 lymphoma cells by natural killer cells. The enhanced potency of the agalacto/asialo derivative indicates that the nature of the carbohydrate moiety exposed on the protein determines the effectiveness of the glycoprotein and its deglycosylated derivatives may function to regulate immune responses in various physiological and pathological conditions.

Antibody Formation↗

The microheterogeneity of human plasma alpha1-acid glycoprotein.

alpha1-Acid glycoprotein was isolated in the homogeneous state from the plasma of 33 normal individuals and subjected to analytical isoelectric focusing before and after treatment with neuraminidase. The native glycoprotein preparations, resolved into 6 to 8 bands, were quantitated and grouped into two classes according to the patterns obtained: One class exhibited a relatively anodic and the other a relatively cathodic distribution of the protein bands. The isoelectric points of these bands ranged from pH 2.90 to 3.30. After treatment with neuraminidase the resulting asialo-glycoproteins were also quantitated and afforded two types of fundamentally different patterns from those mentioned above, namely one type with one and the other type with two main bands and both exhibiting several minor components. The isoelectric points of the main bands were found to be of pH 4.55 and 4.70 while those of the minor bands were at both the anodic and cathodic side of the major bands. No apparent relationship between the patterns of the native and those of the asialo-glycoproteins could be established. In addition, a new variant was noted whose major band focused at a pH of 5.0. The microheterogeneity of alpha1-acid glycoprotein is thus interpreted to be due to the amino acid replacements of this protein in combination with the linkages of the sialyl to the galactosyl residues in the native protein.

Humans↗

The primary structure of the asialo-carbohydrate units of the first glycosylation site of human plasma alpha 1-acid glycoprotein.

The elucidation of the structures of the carbohydrate units linked to glycosylation site I of human plasma alpha 1-acid glycoprotein is described. These carbohydrate units can be grouped into compounds with bi- (class A) and triantennary (class B) structures and the triantennary structure with a fucose residue (class BF) (Fig. 1). The structural variability of the carbohydrate units of glycosylation site I and also of glycosylation sites II to V (Fournet, B., Montreuil, J., Strecker, G., Dorland, L., Haverkamp, J., Vliegenthart, J.F.G., Binette, J.P. and Schmid, K. (1978) Biochemistry 17, 5206--5214) accounts largely for the microheterogeneity of alpha 1-acid glycoprotein.

Carbohydrate Conformation↗

Relationships among raffinose plasmids determined by the immunochemical cross-reaction of their alpha-galactosidases.

Plasmid-encoded alpha-galactosidase served as a marker enzyme for the recognition and comparison of raffinose (Raf) plasmids present in strains of Escherichia coli. Immunochemical relationships were established among Raf plasmids of 39 independent isolates from man and domestic animals (from three continents) by using antiserum against alpha-galactosidase. Immunodiffusion revealed three serological subclasses of alpha-galactosidase, which are correlated with the biological and geographical origin of the host strains. It is concluded that the raf determinants of all Raf plasmids tested have evolved from a common ancestor.

Animals↗