Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Receptors, Albumin”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Specificities of albumin receptors and albumin antibodies.

Receptor sites for polymerized human serum albumin (pHSA) on the envelope of hepatitis B virus (hepatitis B surface antigen) and antibodies to pHSA in sera of patients with liver disease were differentiated by an indirect fluorescent antibody method. Analysis of the specificities of pHSA receptors and antibodies to pHSA by hemagglutination inhibition suggested that pHSA receptors reacted with a species-specific site on pHSA, whereas "autoantibodies" to pHSA cross-reacted with pHSA from different species. These human antibodies inhibited the binding of hepatitis B surface antigen-associated receptors to pHSA.

Antibody Specificity↗

Comparison of albumin receptors expressed on bovine and human group G streptococci.

The albumin receptor expressed by bovine group G streptococci was extracted and affinity purified. The protein was characterized for species reactivity, and monospecific antibodies were prepared to the purified receptor. The bovine group G albumin receptor was compared functionally, antigenically, and for DNA homology with the albumin-binding protein expressed by human group G streptococci. In agreement with previous reports, the albumin-binding activity of human strains was mediated by a unique domain of the type III immunoglobulin G-Fc-binding molecule, protein G. The albumin receptor expressed by bovine group G strains was found to lack any immunoglobulin G-binding potential but displayed a wider profile of species albumin reactivity than protein G. Both albumin receptors could inhibit the binding of the other to immobilized human serum albumin, and each displayed similar binding properties. Antigenic comparison of the two albumin receptors demonstrated a low level of cross-reactivity; however comparison at the DNA level, using an oligonucleotide probe specific for the albumin-binding region of protein G, demonstrated that the two albumin receptors expressed by human and bovine group G streptococcal strains do not display significant homology.

Albumins↗

Isolation of a specific albumin receptor from a group G streptococcal strain.

The albumin receptor, a bacterial cell-wall protein with affinity for albumin, has been isolated from a bovine group G streptococcal strain (DG-8). Bacterial surface proteins were solubilized by boiling in 0.6M HCl for 5 min. The albumin receptor was isolated by sequential use of ion-exchange chromatography on DEAE-Sephadex A-50 and affinity chromatography on albumin coupled Sepharose 4B. The presence of albumin receptor in various pools and fractions during the isolation was followed by their ability to inhibit the binding of radiolabelled albumin to DG-8 bacteria. A highly purified albumin receptor was obtained according to Western blot analysis. The albumin binding band obtained showed a molecular weight of about 30,000. The purified receptor did not possess any IgG binding capacity. 50 micrograms albumin receptor was prepared from each gram of bacteria.

Bacterial Proteins↗

The albumin receptor effect may be due to a surface-induced conformational change in albumin.

To determine whether equilibrium binding between albumin and hepatocytes involves a cell surface receptor for albumin, we incubated freshly isolated rat hepatocytes with 125I-albumin and determined the amount of albumin associated with the cells as a function of the total albumin concentration. The resulting two-phase binding curve showed the rat albumin-hepatocyte interaction to consist of a saturable binding interaction with a dissociation constant of 1.1 microM and 2 X 10(6) sites/cell in addition to a weak, nonsaturable binding interaction. However, the saturable binding of albumin to hepatocytes did not appear to result from the presence of an albumin receptor on the cell surface; the interaction was the same for different species of albumin, for chemically modified albumins, and for fragments of albumin representing mutually exclusive domains of the molecule. The saturable binding was, instead, found to involve a subpopulation of albumin with an enhanced affinity for the cell surface. We show that this subpopulation of albumin is generated upon contact with either solid surfaces or cell surfaces and can be transferred from one surface to another. We propose that the two-phase Scatchard binding curve and the "albumin receptor effect" reflect two populations of albumin that bind to the cell surface with different affinities rather than one population of albumin that binds to two classes of binding sites.

Animals↗

Studies of albumin binding to rat liver plasma membranes. Implications for the albumin receptor hypothesis.

To characterize a previously proposed hepatocyte albumin receptor, we examined the binding of native and defatted 125I-labeled rat albumin to rat liver plasma membranes. After incubation for 30 min, binding was determined from the distribution of radioactivity between membrane pellet and supernatant following initial centrifugation (15000 X g for 15 min), and after repeated cycles of washing with buffer and re-centrifugation. 125I-labeled albumin recovered in the initial membrane pellet averaged only 4% of that incubated. Moreover, this albumin was only loosely associated with the membrane, as indicated by recovery in the pellet of under 0.5% of the counts after three washes. Binding of 125I-labeled albumin to the plasma membranes was no greater than to erythrocyte ghosts, was not inhibited by excess unlabeled albumin, and was not decreased by heat denaturation of the membranes, all suggestive of a lack of specific binding. Failure to observe albumin binding to the membranes was not due to a rapid dissociation rate or 'off-time', as incubations in the presence of sufficient ultraviolet light to promote covalent binding of ligands to receptors did not increase 125I counts bound to the membrane. Finally, affinity chromatography over albumin/agarose gel of solubilized membrane proteins provided no evidence of a membrane protein with a high affinity for albumin. These studies, therefore, do not support the hypothesis that liver cell plasma membranes contain a specific albumin receptor.

Animals↗

Simplified single radial immunodiffusion detection of albumin receptors on HBsAG particles and its significance regarding sero-changes of HBeAG in hepatitis-B patients.

A simplified single radial immunodiffusion (SRID) method to detect HBsAg particles albumin receptor activity in regard to polymerized human serum albumin (pHSA) (binding-activity of pHSA = pHSA-BA or albumin receptor activity) was developed and its significance in HBeAg-positive hepatitis B patients after a one year follow-up study was discussed. The pHSA-BA determined by the simplified SRID method was classified into 5 grades; +, +/- and -, and the results of this grading of test sera agreed well with those obtained by the ELISA quantitative assay. According to the results of one year follow-up study in sero-changes of HBeAg in 35 HBeAg-positive cases, 7 cases with pHSA-BA did not show HBeAg sero-change, but of 16 cases with pHSA-BA and 12 cases with (+) pHSA-BA 3 (18.8%) and 7 (58.3%) cases showed HBeAg sero-changes, respectively. These results suggest that the present simplified SRID detection of albumin receptor on HBsAg particles might be a useful method for the laboratory investigation of hepatitis B patients.

Adult↗

[Albumin receptors on isolated human hepatocytes. Studies by phase contrast and scanning electron microscopy].

In the present work a minibead method has been employed to study human hepatocyte receptors for albumin-coupled latex particles. The cell-latex reaction was observed in both phase contrast and scanning electron microscopy. It has been demonstrated that human hepatocytes exhibit bindings sites for different forms of glutaraldehyde-treated albumin, and the ligand has proved to be species-nonspecific. The albumin binding activity is temperature-dependent and can be only partially blocked by preincubation with free, glutaraldehyde-treated protein, unless hepatocytes are pretreated with vinblastine sulfate. The possible biological role of these receptors as regards the infection due to the hepatitis B virus (that shares common, but not identical binding sites) is also discussed.

Humans↗

Kinetic analysis of myocardial fatty acid oxidation suggesting an albumin receptor mediated uptake process.

The relationship between extracellular albumin and non-esterified fatty acid (NEFA) concentrations and the rate of fatty acid oxidation was studied. The data were obtained from tests performed on a working rat heart. When NEFA concentration was increased the rate of fatty acid oxidation showed a saturation curve at a constant NEFA/albumin ratio. Keeping constant the albumin concentration, a rise in NEFA concentration resulted in a linear increase of fatty acid oxidation. No correlation, however, was found between fatty acid oxidation and the unbound fraction of fatty acids. These results suggest an albumin receptor mediated NEFA uptake. With this assumption the following rate law of the NEFA uptake was derived: UPT = UPT0 X [FA]/(Km + [ALB] ) where [FA] and [ALB] are the total NEFA- and albumin concentrations, UPT0 and Km are constants. The rates of oxidation computed with this equation show a very good congruence to the values obtained experimentally. The validity of the rate law is confirmed by the fact that it is shown to be in agreement to the results of other investigators.

Animals↗

'Albumin-receptor' uptake kinetics do not require an intact lobular architecture and are not specific for albumin.

When freshly isolated well-stirred single cell suspensions of rat hepatocytes were incubated with 5-600 microM [3H]oleate or [35S]sulfobromophthalein (BSP) in the presence of 150 microM bovine serum albumin (BSA), uptake of both ligands increased as a linear function of the total ligand concentration in the medium. By contrast, when the same ligand concentrations were incubated as 1:1 complexes with BSA, apparent saturation of ligand uptake was observed. Analogous results were obtained in incubations employing beta-lactoglobulin instead of BSA. In none of these studies did ligand uptake velocity correlate in simple fashion with the concentration of unbound ligand in the incubation medium. These studies establish that the basis for the kinetic observations termed the 'albumin receptor phenomenon' does not require an intact hepatic lobular architecture or space of Disse, and is not specific for albumin.

Animals↗