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Josef Michl

Publications and source records attributed to Josef Michl.

42 records · Page 3Linked to original sources

A protein kinase C inhibitor induces phenotypic reversion of ras-transformed pancreatic cancer cells and cooperatively blocks tumor cell proliferation with an anti- ras peptide.

PURPOSE: We have previously found that the staurosporine derivative, CGP 41 251, that has a high specificity for inhibiting protein kinase C (PKC), selectively blocks oncogenic ras-p21-induced oocyte maturation and that PKC and jun-N-terminal kinase (JNK), with which oncogenic ras-p21 directly interacts, reciprocally require each other's activation. We sought to determine whether CGP 41 251 blocks proliferation of ras-transformed mammalian cells and whether it synergistically exerts this effect with a ras-p21 peptide (residues 96-110) that interferes with the interaction of ras-p21 with JNK. METHODS: We incubated ras-transformed rat pancreatic cancer TUC-3 cells and their normal counterpart pancreatic acinar BMRPA1 cells with CGP 42 251 alone and in the presence of the ras-p21 96-110 peptide, both in pre- and post-monolayer phases and determined cell counts and morphology and, for TUC-3 cells, their ability to grow on soft agar. In the post-monolayer experiments, we also evaluated these parameters after withdrawal of these agents. RESULTS: CGP 41 251, but not its inactive analogue, CGP 42 700, blocked pre-monolayer growth and reduced post-monolayer cell counts of both TUC-3 and BMRPA1 cells (IC(50) 0.28 and 0.35 micro M, respectively). After 2 weeks of treatment, all the remaining TUC-3 cells exhibited the untransformed phenotype. Withdrawal of CGP 41 251 resulted in almost complete regrowth of the normal BMRPA1 cells while the reverted TUC-3 cells grew much more slowly. These effects were greatly enhanced by the presence of the ras-p21 96-110 peptide. CONCLUSIONS: CGP 41 251 strongly blocks growth of ras-transformed pancreatic cancer cells by causing cell death and by induction of phenotypic reversion. The enhancement of this effect by the ras-p21 96-110 peptide indicated synergy between it and CGP 41 251, allowing it to block proliferation of the transformed cells selectively. These findings suggest the possibility of using these two agents in anticancer therapy.

Antineoplastic Agents↗

Preparation of 5-brominated and 5,5'-dibrominated 2,2'-bipyridines and 2,2'-bipyrimidines.

Efficient syntheses of 5-brominated and 5,5'-dibrominated 2,2'-bipyridines and 2,2'-bipyrimidines, useful for the preparation of metal-complexing molecular rods, have been developed. 5-Bromo-2,2'-bipyridine, 5-bromo-5'-n-butyl-2,2'-bipyridine, and 5-bromo-5'-n-hexyl-2,2'-bipyridine were obtained by Stille coupling of 2,5-dibromopyridine with 2-trimethylstannylpyridine or the requisite 5-alkyl-2-trimethylstannylpyridine, obtained via regioselective zincation of a 3-alkylpyridine.BF(3) complex in the less hindered of the two reactive positions with lithium di-tert-butyl-(2,2,6,6-tetramethylpiperidino)zincate. 5,5'-Dibromo-2,2'-bipyridine was obtained by the reductive symmetric coupling of 2,5-dibromopyridine with hexa-n-butyldistannane. The yields of these coupling reactions ranged from 70 to 90%. 5-Bromo- and 5,5'-dibromo-2,2'-bipyrimidines were obtained in yields of 30 and 15%, respectively, by bromination of 2,2'-bipyrimidine, prepared from 2-chloropyrimidine in 80% yield by an improved reductive symmetric coupling procedure.

Journal Article↗

Double actinometry for rigorous evaluation of quantum yields of clean photoreversible photochemical reactions.

We point out that the simultaneous use of two actinometers can be useful in photochemical quantum yield determinations and illustrate this by describing a simple, general, and mathematically rigorous procedure for the determination of quantum yields of a clean photoreversible photochemical reaction of the type A + hv --> B, B + hv --> A. This is useful when simplifying assumptions cannot be made: both A and B absorb light to a significant extent, irradiation is not at an isosbestic point, and neither the absorbance nor the transmittance of the sample is small. The method represents a viable alternative to those currently in use. It is versatile in that it considers the reaction behavior accurately along its course from an initially pure single component all the way to the photostationary mixture. The performance of the method has been demonstrated on a photoreversible 6pi + 6pi photocycloaddition reaction. A detailed description of an apparatus and procedures suitable for measurement of photochemical quantum yields as a function of wavelength and temperature is provided.

Journal Article↗

Manifestations of Bridgehead-Bridgehead Interactions in the Bicyclo[1.1.1]pentane Ring System.

A series of 3-halo-substituted bicyclo[1.1.1]pentane-1-carboxylic acids 1 (Y = COOH; X = F, Cl, Br, I, and CF(3)) as well as the parent compound 1 (Y = COOH, X = H) have been prepared, and a study of some of their properties have been made. It was found that their reactions with xenon difluoride cover a wide range of reactivities. On one hand, the fluoro acid 1 (Y = COOH, X = F) displayed no apparent reaction at all while, on the other, the bromo acid 1 (Y = COOH, X = Br) and parent compound 1 (Y = COOH, X = H) underwent ready reaction with complete disintegration of the ring system. A possible explanation is advanced based on polar kinetic and thermodynamic effects governing the lifetime of an intermediate acyloxy radical species. The relative ease of oxidation of the carboxylates 1 (Y = COO(-); X = H, F, Cl, Br, I, CF(3), and COOCH(3)), as mirrored by their peak oxidation potential values (E(p)) determined by cyclic voltammetry, also covers a wide range. These data coupled with the dissociation constants (pK(a)) of some of the acids 1 (Y = COOH; X = H, F, Cl, and CF(3)) reflect significantly on the modes of transmission of electronic effects acting through the bicyclo[1.1.1]pentane ring system.

Journal Article↗

C-Hydroxydicarba-closo-dodecaboranes.

An improved synthesis and a full characterization of all three 12-vertex C-hydroxydicarba-closo-dodecaboranes 1-3 are reported. These inorganic analogues of phenols are highly acidic, but unlike phenols, they are transparent in the near-UV region and are stable to oxidation. The structure of their oxyanions 1a-3a poses an interesting issue of a closo versus a bridged nido form. Also described is an introduction of a functionalized spacer in position 2 of 1 designed to permit incorporation into more complex organic structures.

Journal Article↗