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Biomedical subjects

I Zetl

Publications and source records attributed to I Zetl.

13 recordsLinked to original sources

Chemical reactivity of the toxin oosponol from Gloeophyllum abietinum with nucleophilic agents.

It is shown that contrary to most isocoumarins the antibiotic compound oosponol from the fungus Gloeophyllum abietinum reacts instantaneously with nucleophilic agents like thiol compounds. The reason for this high reactivity is due to the vinylogous acid anhydride character of the compound which is produced by a single oxidation step of the non toxic biological precursor oospoglycol. One must assume that reactions of oosponol with HS-groups of polypeptides form the basis for its toxicity. The ring-opening reactions were studied in detail with the synthetic analogue 4-acetyl-isocoumarin. The structures of some reaction products have been analysed mainly with H-1 and C-13 NMR spectroscopy.

Anti-Bacterial Agents↗

Secondary fungal metabolites and their biological activities, IV. Synthesis of compounds with structural similarities to the toxic metabolites of the pathogenic fungus Heterobasidion annosum and investigation of their antibiotic activities.

A series of synthetic analogues of fomannoxin and fomajorin S, the toxic metabolites of the basidiomycete Heterobasidion annosum, was prepared in order to investigate which partial structures of the molecules are responsible for their biological activities. Of the compounds synthesized the five indane-2-acid derivatives 5-acetylindane-2-carboxylic acid (2), (+/-)5-formylindane-2-carboxylic acid (3), (+/-)indane-2,5-dicarboxylic acid (4), (+/-)formyl-2-methylindane-2-carboxylic acid (7) and 5-acetyl-indane-2,2-dicarboxylic acid (10) and 4-(2'-ethylbutyloxy)benzaldehyde (18) have not yet been described. Different biological test systems were employed to investigate the antibiotic activities of the synthesized analogues. The experimental results suggest that in the case of fomajorin S, the structural element essential for its toxicity is the 2-H- or 2-methylindane 2-acid. From the results obtained with the synthetic analogues of fomannoxin, it is now evident that the toxicity of this fungal metabolite can be attributed to an aromatic ring with a carbonyl or carboxyl substituent combined with a branched lipophilic side chain in p-substitution.

Antifungal Agents↗

[Side reactions in peptide synthesis. V. O-sulfonation of serine and threonine during removal of pmc- and mtr-protecting groups from arginine residues in fmoc-solid phase synthesis].

A novel side reaction in Fmoc-solid-phase synthesis, which occurs during removal of protecting groups and detachment from the resin, was elucidated by investigations on model peptides: During the cleavage of Pmc- or Mtr-protecting groups from arginine residues by trifluoroacetic acid in peptides with O-tert-butyl-protected aliphatic hydroxyamino acids, peptides containing O3-sulfo-serine and O3-sulfo-threonine are formed as side-products in high yields, if suitable scavengers are absent. Subsequent to their isolation and purification, the structures of these peptide sulfuric acid mono-esters could unequivocally be proven by chemical and spectroscopic (MS, NMR, IR) methods.

Amino Acid Sequence↗

Activation and detoxication of aminophenols. II. Synthesis and structural elucidation of various thiol addition products of 1,4-benzoquinoneimine and N-acetyl-1,4-benzoquinoneimine.

1. Nine thioethers of 4-aminophenol with beta-hydroxyethylmercaptan, ranging from mono- to tetra-substituted thioadducts, were prepared from synthetic 1,4-benzoquinoneimine and characterized by 1H-n.m.r. and u.v. spectroscopy. For each compound, extinction coefficients and pKa values of the amino group were determined. 2. Five thioethers of 4-aminophenol with glutathione (GSH) were prepared and characterized by 1H-n.m.r. and u.v. spectroscopy with their respective extinction coefficients and pKa values. Two further thioadducts were tentatively assigned by their u.v. spectroscopic properties. 3. Reaction products of 1,4-[U-14C]benzoquinoneimine and GSH were studied, indicating formation of 4-amino-2-(glutathione-S-yl)phenol, 4-amino-2,3,6-tris(glutathione-S-yl)phenol as the main products. Formation of glutathione disulphide (GSSG) was not detected. In contrast, N-acetyl-1,4-[U-14C]benzoquinoneimine was partly reduced by GSH and formed only the 2-substituted thioadduct. 4. Investigation of the product orientation in the reductive addition of GSH to 2-(glutathione-S-yl)-1,4-benzoquinoneimine and 3-(glutathione-S-yl)-1,4-benzoquinoneimine, respectively, showed that the 3-substituted derivative formed mainly the 3,5-di-substituted thioadduct, whereas the 2-substituted compound formed mainly the 2,3,6-tri-substituted thioadduct. 5. Formation of thioadducts which autoxidize markedly faster than the parent aminophenol indicates that thioether formation is not an obligatory detoxication process.

Aminophenols↗

Activation and detoxication of aminophenols. III. Synthesis and structural elucidation of various glutathione addition products to 1,4-benzoquinone.

1. Four thioethers of 1,4-hydroquinone with glutathione (GSH) were prepared from 1,4-benzoquinone and characterized by 1H-n.m.r. and partly by 13C-n.m.r. spectroscopy. The structures of three additional thioethers were tentatively assigned by u.v. spectroscopy. 2. The corresponding thioethers of 1,4-benzoquinone with GSH were obtained by oxidation of the corresponding 1,4-hydroquinone thioadducts with PbO2 or potassium ferricyanide. 3. Relative redox potentials of the hydroquinone/benzoquinone thioethers were estimated by determination of their redox equilibria with benzoquinone/hydroquinone. The redox potential of the mono-substituted derivative was 30 mV lower, and that of the di-substituted derivatives 70 mV lower, than that of the unsubstituted couple, thus explaining the readiness of sequential oxidation and addition reactions of the produced thioethers. 4. By use of 1,4-[U-14C]benzoquinone the reaction products with GSH were quantified to elucidate the product orientation. As observed with 1,4-benzoquinoneimine and its thioethers, formation of GSSG was not detected at physiological pH. 5. The high susceptibility of particular thioethers of 1,4-hydroquinone towards (aut)oxidation characterizes these products as reactive intermediates rather than as definitive detoxication products.

Aminophenols↗

[Mechanism of action of silibinin. V. Effect of silibinin on the synthesis of ribosomal RNA, mRNA and tRNA in rat liver in vivo].

The influence of the flavonolignane Silibinin on the rate of RNA synthesis in rat livers was studied in detail and the time course of the stimulatory effect was determined: 8 h after i.p. application a maximal increase of about 60% in nuclear RNA synthesis can be observed. The analysis of the RNA by electrophoresis on agarose and by sucrose gradient centrifugation demonstrated that in particular the ribosomal RNA (28S, 18S, 5.8S) synthesis is accelerated followed by enhanced incorporation of rRNA into mature ribosomes. During stimulation also changes in the pattern of 45S RNA can be observed. The synthesis of mRNAs, 5S RNA and tRNAs is not influenced by Silibinin, which was shown after separation of these moieties on oligo(dT)-cellulose, and by polyacrylamid electrophoresis, respectively. The clinically observed enhancement of liver cell regeneration during Silibinin treatment thus can be explained by an increase of the protein synthetic apparatus.

Animals↗

The quantitative protein composition of calf thymus chromatin.

The proteins of calf thymus chromatin were analysed quantitatively using a combination of polyacrylamide and cellogel electrophoreses. Quantification was achieved by determining the staining values of each purified histone with amido-black. The results indicate that, on average, 700 molecules histone F1, 850 of F2al, 1440 of F2a2, 1 890 of F2b, 2380 of F3 and 500-1000 non-histone molecules are bound per 10(5) base pairs of DNA. This suggests a moderately dense protein covering of the DNA.

Amido Black↗