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Biomedical subjects

A Schibeci

Publications and source records attributed to A Schibeci.

14 recordsLinked to original sources

Analysis of serum antibody repertoires by isoelectric focusing and capillary blotting onto nitrocellulose paper.

A rapid method for the analysis of antigen-specific human serum antibodies is described. After isoelectric focusing on thin agarose gels, serum proteins are transferred to nitrocellulose paper by capillary blotting. The kinetics of transfer indicated that ca. 90% of 125I-labelled isolated human immunoglobulins (IgG, IgA and IgM) are transferred to the nitrocellulose paper within 10 min. Probing of the nitrocellulose blot with 125I-labelled tetanus toxoid antigen followed by autoradiography reveals the total serum anti-tetanus toxoid antibody repertoire, including high molecular weight IgM. This procedure is rapid (results can be obtained in less than 12 h), sensitive and should prove very useful for detailed studies and analysis of antibody repertoires in body fluids and extracts

Adult↗

Biosynthesis of arabinogalactan-protein in Lolium multiflorum (Italian ryegrass) endosperm cells. Subcellular distribution of galactosyltransferases.

Intracellular membranes from protoplasts of Italian-ryegrass (Lolium multiflorum) endosperm cells have been fractionated on sucrose density gradients and identified on the basis of putative-marker-enzyme assays. Galactosyltransferases capable of incorporating galactose from UDP galactose into 66% ethanol-soluble products are associated with all membrane fractions. Affinity chromatography of the ethanol-insoluble products on (murine myeloma protein J539)-Sepharose reveals that the enzymes responsible for the synthesis of polymers containing (1----6)-beta-D-galactose residues are associated exclusively with subcellular fractions enriched in Golgi-derived membranes. This suggests that the Golgi apparatus plays an important part in the synthesis of the carbohydrate component of the ryegrass arabinogalactan-protein.

Centrifugation, Density Gradient↗

Localization of beta-glucan synthases on the membranes of cultured Lolium multiflorum (ryegrass) endosperm cells.

The distribution of beta-glucan synthases between plasma membranes and intracellular membranes of suspension-cultured Italian-ryegrass (Lolium multiflorum Lam.) endosperm cells was examined. Highly purified plasma membranes prepared from protoplasts were only slightly enriched in beta-glucan synthases assayed at 10 microM- and 1 mM-UDP-glucose. Most beta-glucan synthase was associated with intracellular membranes. These membranes were fractionated on a linear sucrose density gradient and were resolved into different membrane fractions containing beta-glucan synthases. Beta-Glucan synthases assayed at 10 microM-UDP-glucose were found in a fraction banding at a density of 1.11 g . cm-3, but most of the beta-glucan synthase assayed at 1 mM-DDP-glucose was at a density of 1.04 g . cm-3.

Cell Membrane↗

Biosynthesis of Arabinogalactan-Protein in Lolium multiflorum (Ryegrass) Endosperm Cells : III. Subcellular Distribution of Prolyl Hydroxylase.

The peptidyl prolyl hydroxylase responsible for the formation of hydroxyproline during arabinogalactan-protein biosynthesis in Lolium multiflorum (ryegrass) endosperm cells is a membrane-associated enzyme which will catalyze the hydroxylation of poly(l-proline) in the presence of oxygen, alpha-ketoglutarate, ferrous ion, and ascorbate. The K(m) for poly(l-proline) (8000 molecular weight) is 40 micromolar. The enzyme will also hydroxylate the protocollagen analog (Pro-Pro-Gly)(5).4H(2)O.Fractionation of membranes from protoplast lysates on a discontinuous sucrose/sorbitol density gradient, followed by centrifugation on a linear sucrose gradient in the presence of Mg(2+), leads to a clear separation of a number of membrane components. The membrane components have been tentatively identified using marker enzymes and assayed for peptidyl prolyl hydroxylase. It is concluded that the ryegrass prolyl hydroxylase is enriched in Golgi-derived membranes, but that significant amounts are also located in other subcellular fractions, including the rough endoplasmic reticulum.

Journal Article↗

Isolation of plasma membrane from protoplasts of Lolium multiflorum (ryegrass) endosperm cells.

Plasma membranes have been isolated from protoplasts of suspension-cultured ryegrass (Lolium multiflorum) endosperm cells. The protoplast membrane is coated before cell disruption with murine myeloma protein J539, a galactose-binding immunoglobulin A. The plasma membrane is labelled with 125I by using chemically or enzymically catalysed iodination techniques, or, more conveniently, by using 125I-labelled myeloma protein J539, which enables the membrane to be simultaneously coated and labelled. Protoplast lysis is effected by gentle mechanical means after swelling in hypo-osmotic medium. The plasma-membrane fraction is recovered at low centrifugal forces by fractionation of cell lysates on a discontinuous sucrose/sorbitol gradient. The plasma-membrane fraction is enriched 96-fold on a protein basis with respect to the specific radioactivity of 125I-labeled myeloma protein J539 in the homogenate. Electron microscopy showed long membrane profiles often associated with one another.

Carrier Proteins↗

The binding of arsenazo III to cell components.

The Ca2+ indicator, arsenazo III, binds to subcellular fractions of rabbit skeletal muscle with sufficient affinity that in living muscle containing 1--2 mM arsenazo III, the estimated free arsenazo III concentration is only 50--200 microM; 80--90% of the bound arsenazo III is associated with soluble proteins. The binding of arsenazo III to soluble proteins decreases the optical response of the dye to Ca2+; this is due to a decrease in the affinity of the protein-bound dye for Ca2+. Approximately half of the bound arsenazo III is released from the particulate fraction and soluble proteins upon addition of 5 mM Ca2+, suggesting that the Ca-arsenazo complex has lower affinity for the protein binding sites than the free dye. The Ca2+ binding to the soluble protein fraction of rabbit skeletal muscle is attributable largely to its parvalbumin content.

Animals↗

Ca2+-binding proteins in nuclei.

Nuclei isolated from skeletal muscle of 15-day-old chick embryos, adult chickens, rabbits and from rat liver contain on the average 8-18 nmol Ca2+/mg protein. Digestion of nuclei with DNAase I and RNAase at 37 degrees C for 8--12 h reduced the Ca2+ binding by more than 90%. After nuclease treatment, Ca2+-binding proteins were identified in the nonhistone chromosomal protein fractions and in the insoluble residue by equilibrium dialysis and centrifuge transport, in media of 0.1 M KCl and 1 mM MgCl2. The interaction of Ca2+-binding proteins with chromatin may be of importance in the regulation of the gene expression in response to changes in cytoplasmic and nucleoplasmic free-Ca2+ concentration.

Animals↗

Lipids of yeasts.

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Aerobiosis↗