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Biomedical subjects

E Ziomek

Publications and source records attributed to E Ziomek.

At least 19 recordsLinked to original sources

Reduction of strong lipase-polyclonal antibodies binding by limited proteolysis.

Initial attempts to purify Geotrichum candidum lipase (EC 3.1.1.3) using immunoaffinity chromatography have been hampered by the tight binding of the lipase to the immobilized rabbit anti-GCL IgG. Stringent elution conditions were unable to release more than a few percent of the antigen. To decrease the tight binding, the immunosorbent was treated with minute amounts of different proteases, of which elastase proved to be most effective. Using the elastase-treated immunosorbent both natural and recombinant GCL II were purified to homogeneity with 30% of lipase recovered from the immunoaffinity chromatography step.

Antibodies, Fungal

Expression and characterization of Geotrichum candidum lipase I gene. Comparison of specificity profile with lipase II.

Despite tremendous progress in the elucidation of three-dimensional structures of lipases, the molecular basis for their observed substrate preference is not well understood. In an effort to correlate the lipase structure with its substrate preference and to clarify the contradicting reports in the literature, we have compared the enzymic characteristics of two closely related recombinant lipases from the fungus Geotrichum candidum. These enzymes were expressed in the yeast Saccharomyces cerevisiae as fusions with an N-terminal poly(His) tag and were purified in a single step by metal-affinity chromatography. Their specific activities against a series of triacylglycerol substrates were compared using a titrimetric assay. The substrates varied in fatty acyl chain length, number of double bonds and their position along the chain. G. candidum lipases I and II (GCL I and GLC II) are markedly different with respect to their substrate preferences. For unsaturated substrates having long fatty acyl chains (C18:2 cis-9, cis-12 and C18:3 cis-9, cis-12, cis-15), GCL I showed higher specific activity than GCL II, whereas GCL II showed higher specific activity against saturated substrates having short fatty acid chains (C8, C10, C12 and C14). We have constructed a hybrid molecule containing the N-terminal portion of GCL I (including the flap covering the active site) linked to the C-terminal portion of GCL II. The hybrid molecule showed a substrate preference pattern identical to that of GCL II. These results indicate that sequence variation within the N-terminal 194 amino acids of G. candidum lipases do not contribute to the observed variation in efficiency by which the lipases hydrolyze their substrates. Moreover, it also shows that the flap region in GCL is not directly involved in substrate differentiation, even though this region is thought to be involved in recognition of the interface and in the activation of the enzyme.

Base Sequence

Cloning and expression of Geotrichum candidum lipase II gene in yeast. Probing of the enzyme active site by site-directed mutagenesis.

The three-dimensional structure of lipase II of Geotrichum candidum strain ATCC34614 (GCL II) has provided insights with respect to the nature of the catalytic machinery of lipases. To support these structural observations, we have carried out an analysis of GCL II by mutagenesis. The gene encoding lipase II of Geotrichum candidum strain ATCC34614 (GCL II) was amplified using the polymerase chain reaction, cloned, and sequenced. The intronless lipase gene was expressed and secreted from Saccharomyces cerevisiae at approximately 5 mg/liter of culture. Recombinant GCL II was purified by immunoaffinity chromatography and characterized using a combination of substrates and independent analytical methods. The recombinant enzyme and the enzyme isolated from its natural source have comparable specific activities against triolein of about 1000 mumol of oleic acid released/min/mg of protein. The putative catalytic triad Ser217-His463-Glu354 was probed by site-directed mutagenesis. The substitution of Ser217 by either Cys or Thr and of His463 by Ala led to a complete elimination of the activity against both triolein and tributyrin. Substitution of Glu354 by either Ser, Ala or Gln renders the enzyme inactive and also perturbs the enzyme stability. However, the enzyme with the conservative replacement Glu354 Asp is stable and displays only a small decrease of triolein activity but a 10-fold decrease in activity against tributyrin. There was no appreciable difference in esterase activity between the native, recombinant wild type, and Glu354 Asp mutant. These results confirm that the triad formed by Ser217-Glu354-His463 is essential for catalytic activity. They also show that the active site of GCL II is more tolerant to a conservative change of the carboxylic side chain within the triad than are other hydrolases with similar catalytic triads.

Aspartic Acid

Use of delta-(alpha-aminoadipoyl) chromogenic amides in screening for aminoadipoyl amidohydrolases.

The synthesis of delta-(alpha-aminoadipoyl) aromatic amides and their use in screening for enzymes able to cleave delta-(alpha-aminoadipoyl) residues off the synthetic amides and cephalosporin C are described. A number of commercially available proteases and peptidases were not active with delta-(alpha-aminoadipoyl) chromogenic amides. Also, most tested microbial strains known to produce acylases did not hydrolyze these compounds. Only one microbial strain, Xanthomonas maltophila, had an appreciable activity toward the racemic form of chromogenic substrates. Activity measured in crude extracts from Xanthomonas cells indicated that this bacterium produces predominantly L-specific aminoadipoyl amidohydrolase and gamma-glutamyl hydrolase. A low level of cephalosporin C and glutaryl-cephalosporin acylase activities was also found.

Adipates

Immobilization of isolated and cellular hydrogenase of D. desulfuricans in radiation-polymerized polyacrylamides.

Purified hydrogenase from Desulfovibrio desulfuricans was immobilized either by entrapment or absorption onto porous neutral and charged acrylamide beads. Surface absorption and crosslinking on the beads resulted in a high hydrogenase activity and a good immobilization coefficient compared to the enzyme and whole cells entrapped in the same matrix. Maximum enzyme activity (citrate-phosphate buffer) was shifted to pH 6.5 upon immobilization in contrast to 6.0 for the free enzyme and the range of 6-7 for whole cells. Both the purified enzyme and whole cells were most active when held in neutral matrices. Immobilization improved the temperature stability (65 degrees C) and long term storage (4 degrees C) of the hydrogenase activity of both the purified enzyme and whole cells.

Acrylic Resins

Application of hydrophobic chromatography to the large scale purification of Desulfovibrio desulfuricans cytochrome C3.

Hydrophobic chromatography on Phenyl-Sepharose was employed for large scale purification of cytochrome c3 from Desulfovibrio desulfuricans. This chromatographic procedure minimizes operational volumes and eliminates the lengthy dialysis ordinarily used to remove large amounts of salts. Pure cytochrome c3 was obtained after one additional purification by ion-exchange chromatography.

Amino Acids

Acylases in plasma of hamsters with experimental hepatitis.

After the administration of D-galactosamine to golden Syrian hamsters, a rapid but short-lived increase in acylase I and cobalt-activated (AA-Co) activity was noted in the blood plasma, but not in the liver. In the plasma of control hamsters, only form 2 AA-Co was identified, but during experimental hepatitis, the appearance of form 1 was observed. Only form 2 hamster enzyme is strongly inhibited by alpha-hydroxyisocaproil-tyrosine and reacts with antihuman form 2 antibody.

Alanine Transaminase

Molecular forms of bovine gamma-glutamyltransferase and their enzyme immunoassay.

Light form of bovine kidney gamma-glutamyl transferase was isolated from heavy form of the enzyme after digestion with bromelain. Its apparent molecular weight was 95,000 and in SDS solution it dissociated into two non-identical subunits with molecular weights 26,000 and 69,000. No substantial differences between both forms in activation, kinetic parameters and inhibition with anthglutin and its isomers were noted. Using enzyme immunoassay it was possible to determine one enzyme form in the presence of the other. This was applied for studies of gamma-glutamyltransferase forms in cow serum and colostrum.

Animals

Molecular forms of cobalt-activated acylase in human tissues and serum of patients with viral hepatitis.

Two molecular forms of cobalt-activated acylase present in human tissues and one or three in sera of patients with viral hepatitis were noted. They have different substrate specificity. Only form 2 is strongly inhibited by alpha-hydroxyisocaproyl-tyrosine and -phenylalanine. Electrophoretic migrations of all enzyme forms are different from those of aminoacylase. Immunoglobulin antiform 2 of the acylase does not precipitate other forms of cobalt-activated acylase or aminoacylase.

Aminopeptidases

Properties of penicillin amidase immobilized by copolymerization with acrylamide.

An enzyme preparation in a spherical granule form was obtained by copolymerization of penicillin amidase (EC 3.5.1.11) (previously modified with maleic anhydride) and acrylamide via a crosslinking agent. As compared with the native enzyme, immobilized amidase is more resistant to heating, has a lower affinity to benzylpenicillin, and is less inhibited by phenylacetate. Its substrate specificity and optimum pH remain unchanged.

Acrylamides

Polymorphism of the cobalt-activated acylase in human tissues.

A method was elaborated for obtaining polyacrylamide gel zymograms of the cobalt-activated acylase after electrophoresis. Two fractions of the acylase showing activity towards N-chloroacetyl-gamma-L-glutamyl-beta-naphthylamide were found in human kidney, liver and intestine. The two fractions isolated from liver differ in substrate specificity, heat resistance, response to metal ions, inhibition by deaminated dipeptides, and in molecular weight. They differ also from other N-acylamino acid amidohydrolases: aminoacylase (EC 3.5.1.14) and aspartoacylase (EC 3.5.1.15).

Aminopeptidases

Activity and polymorphism of the cobalt-activated acylase in tissues of rodents during development.

The activity of cobalt-activated acylase, measured towards N-chloroacetyl- and N-butyryl-gamma-L-glutamyl-beta-naphthylamide, was found in all tissues of the adult animals. In the kidney, liver and small intestine of adult guinea-pig and rat two fractions differing in electrophoretic mobility (fractions 1 and 2) were present. The early foetus contained fraction 2, sometimes accompanied by fraction 3 which later disappeared; on further development of the foetus, fraction 1 appeared. Fraction 1 was distinctly activated by cobalt ions; fractions 2 and 3 were strongly inhibited by deaminated leucylphenylalanine. In the guinea-pig, the molecular weight of the three fractions ranged from 43000 to 59000.

Animals