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K D Kulbe

Publications and source records attributed to K D Kulbe.

16 recordsLinked to original sources

Purification and characterization of 2-halocarboxylic acid dehalogenase II from Pseudomonas spec. CBS 3.

2-Halocarboxylic acid dehalogenase II from Pseudomonas spec. CBS 3 (EC 3.8.1.2), which had been cloned in E. coli Hb 101 was purified to electrophoretic homogeneity from crude extracts of E. coli Hb 101 clone 1164. Ammonium sulfate fractionation and three subsequent chromatographic purification steps yielded a pure enzyme in a 230-fold enrichment. The relative molecular masses as determined by gelfiltration on Superose 12 and SDS-polyacrylamide gel electrophoresis were 64,000 Da for the holoenzyme and 29,000 Da for the subunit. The isoelectric point, determined by isoelectric focusing, was at pH 6.2. Substrate specificity towards chlorinated and brominated substrates was limited to short chain monosubstituted 2-halocarboxylic acids. Fluorocompounds were not converted. The reaction proceeded best at a pH above 9.5 and at a reaction temperature of 40-45 degrees C.

Chromatography

Fragmentation of heparin by enzymes from newly isolated microorganisms.

In a screening program a number of new heparin (CAS 9005-49-6) degrading microorganisms from soil and water samples from Europe, Asia and Australia were isolated. The new strains were identified as Cytophaga sp. but are distinct from the known heparin degrading organism Cytophaga heparina in various aspects of cell morphology, sugar metabolism and heparin utilization. Analysis of heparin degradation by crude extracts from Cytophaga heparina-, TM5- and SIN1-cells shows that the products obtained from the different strains are distinct. New sulfate cleaving, lytic and hydrolytic enzyme activities were detected and partially purified. Low molecular weight heparins were produced by enzymatic cleavage of unfractionated heparin. The products were separated by gel permeation chromatography and characterized isotachophoretically.

Biotransformation

Treatment with recombinant human erythropoietin in patients with aluminum overload and hyperparathyroidism.

In a European multicenter trial the weekly rates of increase in hematocrit and reticulocyte values were investigated in hemodialyzed patients with transfusion-dependent anemia treated with recombinant human erythropoietin (rHuEPO). Within a few months of therapy, the number of transfusion-dependent patients decreased to less than 5% of the group. Patients with aluminum overload indicated by elevated basal serum levels or elevated levels after a desferrioxamine challenge showed a significantly reduced response to rHuEPO. whereas in patients with elevated levels of parathyroid hormone a normal response to rHuEPO was found.

Aluminum

Liver support systems: a 1978 perspective.

The present status of support systems and devices for the injured liver is reviewed with emphasis on both long-term and short-term substitution. Long-term replacement can only be possible by the grafting or transplantation of a human and/or other primate liver. Most artificial systems may be applied for short-term biological and technical substitution, e.g., by hemodialysis/hemoperfusion through adsorbents and resins. More sophisticated devices for detoxification of blood or cell-free plasma in acute liver failure should combine the catalytic specificity of immobilized microsomal enzymes with the adsorptive capacity of activated charcoal, resins and affinity gels.

Artificial Organs

Liver 3-phosphoglycerate kinase. Physico-chemical characterization of the bovine-liver enzyme.

Homogeneous phosphoglycerate kinase from bovine liver possesses a maximum ultraviolet absorption at 278 nm (A 1%,1Cm 280 equals 6.7; Amax/Amin equals 2.26; e280 equals 31.5 mM(-1) X cm(-1). The enzyme consists of about 420 amino-acid residues and is a slightly acidic protein with an isoelectric point of 6.5 as expected from amino-acid analysis. The most notable features of the chemical composition are two tryptophan, 12 methionine and four half-cystine residues per enzyme molecule. Although phosphoglycerate kinases from mammalian tissues are partially similar to each other, clear differences in serine, glutamic acid, glycine, cysteine, valine, leucine, tyrosine, tryptophan and arginine contents were found. Fingerprinting and column chromatography of tryptic digests of the S-carboxymethylated protein confirm the data of amino-acid analysis. Liver phosphoglycerate kinase is inactivated when modified with either p-chloromercuribenzoate or 5,5'dithio-bis(2-nitrobenzoic acid) (Nbs2). The enzyme has two thiol groups available for reaction with Nbs2 under denaturing conditions, one of which is essential for catalysis. After reduction by NaBH4 four cysteine residues per molecule were determined with Nbs2, sugessting the presence of a disulfide bridge. Using sedimentation equilibrium studies, the molecular weight was found to be 49600. Gel filtration yielded values of 43000-50000. By analytical dodecylsulfate-polyacrylamide gel electrophoresis a molecular weight of 45600 was estimated. Inconsistent with these results in the value 37500 obtained by thin-layer gel chromatography in 6 M guanidine-HCl. Sedimentation velocity experiments revealed a sedimentation coefficient s20,w equals 3.4 S. The Stokes radius was 2.77 nm, the partial specific volume v 0.747 ml x g(-1). The diffusion coefficient was found to be 76.9 mum2 x s(-1) by analytical gel filtration. From these data a molecular weight of 44000 was calculated. Other physical constants of bovine-liver phosphoglycerate kinase are: frictional ratio f/f0 equals 1.18, axial ratio equals 3.3, maximal degree of hydration equals 0.1 g per g of protein. Bovine-layer phosphoglycerate kinase could not be dissociated into smaller subunits by treatments which have caused dissociation of various other proteins (8 M urea, 6 M guanidine-HCl, dodecyl sulfate, carboxymethylation, maleylation). All experiments strongly support the lack of subunit structure of the enzyme. Some characteristics of bovine-liver phosphoglycerate kinase are compared with the corresponding proteins from rabbit muscle, yeast and human erythrocytes.

Amino Acids