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Biomedical subjects

K Koschel

Publications and source records attributed to K Koschel.

8 recordsLinked to original sources

Loss of the endothelin signal pathway in C6 rat glioma cells persistently infected with measles virus.

Endothelin 1 causes a strong Ca2+ signal in C6 rat glioma cells as measured by fura-2 fluorescence. This endothelin 1-induced Ca2+ signal was not observed when the cells were persistently infected with a measles virus strain of subacute sclerosing panencephalitis (SSPE, strain Lec). Binding of 125I-labeled endothelin 1 to the C6/SSPE cells was less than 5% of the binding to the C6 control cells, suggesting that the impairment in signal transduction was due to a loss of binding sites for endothelin 1. Treatment of the C6/SSPE cells with measles antiserum resulted in the loss of expression of viral proteins located in the membrane as well as inside the cells (antigenic modulation), but it restored neither the endothelin 1-induced Ca2+ rise nor the 125I-endothelin 1 binding. Cocultivation of uninfected C6 cells with C6/SSPE cells (9:1 ratio) resulting in contact-mediated transmission of measles virus showed that the 125I-endothelin 1 binding activity was gradually lost as a consequence of persistent virus infection.

Animals

Effects of volatile anesthetics on cytoplasmic Ca2+ signaling and transmitter release in a neural cell line.

To provide new insights into the effects of volatile agents on the basic regulatory events involved in cytoplasmic free Ca2+ ([Ca2+]i) and stimulus-secretion coupling, the well-characterized clonal rat pheochromocytoma cell line PC12 was chosen as an experimental model. This cell line possesses nicotinic and muscarinic receptors, L-type voltage-operated channels (VOCs), and receptor-operated Ca2+ channels (ROCs). A PC12 variant, defective in nicotinic response, made it possible to study the influx-independent inositol trisphosphate-mediated intracellular Ca2+ release that is triggered by muscarinic receptor stimulation. [Ca2+]i was measured with the fluorescent Ca2+ indicator fura-2. Dopamine and norepinephrine secretion were determined by high-performance liquid chromatography. High K+ and nicotinic-receptor-induced [Ca2+]i increase and catecholamine secretion were inhibited by halothane, enflurane, isoflurane, and methoxyflurane in a dose-dependent manner; half-maximal inhibition (IC50) occurred within the clinically relevant concentration range. The inhibition was reversible after wash-out of anesthetic; was not restricted to dihydropyridine-sensitive L-type VOCs; and could not be overcome by increasing extracellular Ca2+. The inhibitory mechanisms of volatile anesthetics therefore differed from those of classical organic Ca2(+)-channel blockers, a difference also reflected by the differing Hill coefficients found for both substance groups. In contrast, the muscarinic-receptor-evoked internal Ca2+ release remained unimpaired, and secretion even increased under anesthetic exposure. In conclusion, the current study provides evidence that volatile anesthetics depress the Ca2+ influx through at least two independent Ca2+ channels, one of which proved insensitive to the dihydropyridine Ca2(+)-channel blocker nifedipine. This is particularly noteworthy, since dihydropyridine-insensitive N-type VOCs, so far found exclusively in neurons, are assumed to play a dominant role in synaptic transmission, which, although resistant to dihydropyridine inhibition, is effectively blocked by volatile anesthetics.

Anesthetics

Impairment of hormone dependent signal transfer by chronic SSPE virus infection.

In a CNS-derived cell line, the cellular response to hormonal stimulation, represented by the rise of intracellular cAMP levels, is impaired under the influence of a persisting neurotropic virus infection. This dysfunction is caused by the decrease in adenylate cyclase activity, most probably due to the virus-induced loss of active catalytic units.

Adenylyl Cyclases

Rabies virus infection selectively impairs membrane receptor functions in neuronal model cells.

A persistent infection with rabies virus (HEP-Flury) was established in the CNS-derived hybrid cell line 108CC15 which possesses specific membrane receptors for prostaglandins, catecholamines and acetylcholine. We report a differential virus influence on the specific receptor response to PGE, isoproterenol and acetycholine as indicated by typical changes of the intracellular cyclic AMP levels. As the adenylate cyclase activity was unchanged in infected cells in vitro, a selective virus influence on specific receptors themselves or their coupling to the cAMP synthesizing system must be considered.

Animals

Interferon enhances the fragility of lysosomes in L-929 mouse fibroblasts.

Infection of interferon-treated L-929 mouse fibroblasts with vaccinia WR virus is followed by severe cytolysis within 3 to 4 h. It is shown that this cytolysis cannot be caused by enzymes released from lysosomes into the cytosol. However, there is evidence that homologous interferon has a noxious effect on lysosomes. This phenomenon appears to be another aspect of the anticellular functions of interferon.

Animals

Virus-specific proteins associated with the replication complex of poliovirus RNA.

The poliovirus replication complex was isolated and purified from infected HeLa S3 cells. Preparations with RNA-dependent RNA polymerase activity were concentrated 200- and 1000-fold with respect to the original virus and total protein content. The enzyme activity was found to be associated with the proteins NCVPI, 2, 3, 4, (5), 6 and VPl/NCVPx. The structural proteins VP2, 3 and 4 were not present. Addition of cycloheximide to infected cells resulted in a decrease in the in vitro polymerase activity and a loss in NCVPI content. Treatment of the infected cells with toloylsulphonyl-phenylalanine chloromethyl ketone (TPCK) and iodoacetamide (IAA) led to an inhibition of in vivo RNA synthesis. The 750 g supernatant fluids obtained from extracts of these cells were able to block RNA synthesis in vitro. Electrophoretic profiles of the respective protein compositions indicate that large virus precursor proteins are responsible for the inhibition of poliovirus RNA synthesis in vivo and in vitro.

Cycloheximide