Ligandin: a hepatic protein which binds steroids, bilirubin, carcinogens and a number of exogenous organic anions.
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Biomedical subjects
Publications and source records attributed to B Ketterer.
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Electrical relaxation experiments have been performed with phosphatidylinositol bilayer membranes in the presence of the ion carrier valinomycin. After a sudden change of the voltage a relaxation of the membrane current with a time constant of about 20 musec is observed. Together with previous stationary conductance data, the relaxation amplitude and the relaxation time are used to evaluate the rate constants of valinomycin-mediated potassium transport across the lipid membrane. It is found that the rate constants of translocation of the free carrier S and the carrier-ion complex MS(+) are nearly equal (2.10(4) sec(-1)) and are of the same order as the dissociation rate constant of MS(+) in the membrane-solution interface (5.10(4) sec(-1)). The equilibrium constant of the heterogeneous association reaction M(+) (solution) + S (membrane) --> MS(+) (membrane) is found to be approximately 1 M(-1), about 10(6) times smaller than the association constant in ethanolic solution.
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A method of isolating the thick luminal membrane from homogenates of bladder epithelium is described, which entails pretreatment of the epithelium with fluorescein mercuric acetate and centrifugation of the homogenate on sucrose density gradients. A hexagonal array of hexamers is illustrated by negative contrast staining in whole mounts of the isolated thick membrane. Subunits are also shown in tangential sections of this thick membrane, in fixed, embedded bladder epithelium. The significance of the subunits is discussed in the context of membrane structure and permeability.
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1. Three azo-dye-binding proteins were identified in the soluble cell supernatant fraction from livers of rats that had received 4-dimethylaminoazobenzene by intraperitoneal injection. 2. One is basic and was highly purified. It has an isoelectric point of pH8.4 in barbital-sodium chloride buffer, I0.1, an S(20,w) value of 3.5s and a molecular weight determined by Sephadex chromatography of 45000. 3. It does not have N-terminal amino acids with free alpha-amino groups. 4. Digestion with Pronase gives rise to a single azo-dye-bound peptide, which on hydrolysis is shown to contain glycine, alanine, serine, threonine, glutamic acid and aspartic acid. The amino acid that binds the azo-dye was not identified. 5. On starch-gel electrophoresis the basic protein separates into a double band, indicating microheterogeneity. 6. The other two proteins were partially purified and occur in a fraction together. They have isoelectric points near neutrality and a molecular weight as determined by Sephadex chromatography of 13800. 7. The absorption spectra in formic acid of both the basic and the low-molecular-weight proteins are similar. The azonium ion has an absorption maximum at 518mmu and another adsorbed chromogen is present with an absorption maximum at 395mmu.
1. Changes in the structure and function of the rough-surfaced endoplasmic reticulum of the rat liver as deduced by electron microscopy, polysome analysis and the amino acid-incorporating activity of microsome fractions have been followed at various time-intervals after a single intraperitoneal dose of the hepatocarcinogen 4-dimethylaminoazobenzene. 2. The earliest effect observed was detachment of polysomes and disorganization and vesiculation of the cisternae of the rough-surfaced endoplasmic reticulum. This occurred after 6hr. 3. Subsequent to this was a phase of polysome disaggregation accompanied by impaired amino acid-incorporating activity by microsomes together with a much enhanced stimulating effect of polyuridylic acid on amino acid uptake. This reached a maximum at 24hr. 4. By 40hr. polysomes had re-formed and the amino acid-incorporating activity, together with the polyuridylic acid effect, were similar to those in controls. 5. It was not until 112hr. that something like the normal structure of the rough-surfaced endoplasmic reticulum was re-established. 6. It is not yet possible to relate these changes specifically with the process of azo-dye carcinogenesis.
1. A description is given of the isolation of a glycoprotein from hen's-egg white; it has been called ovoglycoprotein. 2. It contains 13.6% of hexose, 13.8% of hexosamine and 3% of sialic acid. 3. Hexose occurs as mannose and galactose in the ratio 2:1, hexosamine as glucosamine and sialic acid as N-acetylneuraminic acid. 4. It has S(20,w) 2.47s and a minimum molecular weight, calculated from the tryptophan content, of 24400. 5. At pH3.9 in acetate buffer, I0.1, which is in the isoelectric region, it is resolved into two components, one of which moves slowly towards the anode while the other moves slowly towards the cathode.
Much evidence supports the view that the rate of conjugation of glutathione (GSH) with aflatoxin B1 (AFB1) exo-epoxide is an important factor in determining the species variation in risk to aflatoxins and that induction of GSH S-transferases can yield a significant protective effect. An assay has been developed in which the enzymatic formation of the conjugates of GSH and AFB1 exo-epoxide and the recently described AFB1 endo-epoxide is measured directly. 1H NMR spectra are reported for both the AFB1 exo- and endo-epoxide-GSH conjugates. Structural assignments were made by comparison with AFB1 exo- and endo-epoxide-ethanethiol conjugates, for which nuclear Overhauser effects were measured to establish relative configurations. The endo-epoxide was found to be a good substrate for GSH conjugate formation in rat liver cytosol while mouse liver cytosol conjugated the exo-epoxide almost exclusively. Human liver cytosol conjugated both epoxide isomers to much lower extents than did cytosols prepared from rats or mice. Purified rat GSH S-transferases catalyzed the formation of the AFB1 exo-epoxide-GSH conjugate in the order 1-1 approximately 4-4 approximately 3-3 greater than 2-2 greater than 4-6 (7-7 and 8-8 did not form the exo-epoxide-GSH conjugate at levels above the nonenzymatic rate). The only rat GSH S-transferases that conjugated the endo-epoxide were 4-4 and 4-6, with 4-4 being the more active.(ABSTRACT TRUNCATED AT 250 WORDS)
Recently, we inserted the plasmid vector pKK233-2 containing rat GSH S-transferase (GST) 5-5 cDNA into Salmonella typhimurium TA1535 and found that these bacteria [GST 5-5(+)] expressed the protein and produced mutations when ethylene or methylene dihalides were added [Thier, R., Taylor, J. B., Pemble, S. E., Ketterer, B., Persmark, M., Humphreys, W. G., and Guengerich, F. P. (1993) Proc. Natl. Acad. Sci. U.S.A. 90, 8576-8580]. After exposure to the known GST 5-5 substrate 1,2-epoxy-3-(4'-nitrophenoxy)propane, the GST 5-5(+) strain showed fewer mutants than the bacteria transfected with the cDNA clone in a reverse orientation [GST 5-5(-)], suggesting a protective role of GST 5-5. However, mutations were considerably enhanced in the GST 5-5(+) strain [as compared to GST 5-5(-)] when 1,2,3,4-diepoxybutane (butadiene diepoxide) or 1,2-epoxy-4-bromobutane was added. The GST 5-5(+) and GST 5-5(-) bacterial stains showed similar responses to 1,2-epoxypropane, 3,4-epoxy-1-butene, and 1,4-dibromobutane. The results suggest that some bifunctional activated butanes are transformed to mutagenic products through GSH conjugation. We also found that the GST 5-5(+) strain showed enhanced mutagenicity with 1,4-dibromo-2,3-epoxybutane, 1,2-epoxy-3-bromopropane (epibromohydrin), and (+/-)-1,4-dibromo-2,3-dihydroxybutane.(ABSTRACT TRUNCATED AT 250 WORDS)