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Biomedical subjects

H Diringer

Publications and source records attributed to H Diringer.

At least 37 records · Page 2Linked to original sources

Small virus-like structure in fractions from scrapie hamster brain.

The scrapie model in hamsters has been used to search for the agents that cause Creutzfeldt-Jakob disease in man and similar transmissible encephalopathies in animals. We found structures that are extraordinarily small for a virus, but exhibit viral structural properties in negatively stained samples, by electron microscopy in fractions containing scrapie-associated fibrils.

Animals↗

Characterisation of antisera raised against species-specific peptide sequences from scrapie-associated fibril protein and their application for post-mortem immunodiagnosis of spongiform encephalopathies.

Transmissible spongiform encephalopathies (TSE), such as scrapie or Creutzfeldt-Jakob disease (CJD), are fatal neurodegenerative diseases of the central nervous system caused by a yet unidentified virus. They are accompanied by a brain specific amyloidosis, during which a host coded protein irreversibly aggregates to form the scrapie-associated fibrils. The diagnosis of TSE relies on histopathological detection of spongiform lesions, on electron microscopical detection of fibrils, or on the immunological detection of SAF protein, which is the most specific diagnostic marker. In order to improve the diagnosis of TSE, we developed a protocol for rapid tissue fractionation and enrichment of SAF protein which subsequently allows the specific detection of SAF protein by western blotting and immunodetection. Using some new antisera raised against synthetic peptides with sequences specific for the hamster, sheep, cattle and human SAF protein, several samples can be diagnosed for TSE within 24 hours, starting with only 10-100 mg of brain tissue from different species.

Amino Acid Sequence↗

Bovine spongiform encephalopathy in Germany.

Bovine spongiform encephalopathy (BSE) has been described as an epidemic central nervous disorder in cattle from the United Kingdom. The disease is thought to have emerged by an interspecies transmission of the scrapie agent of sheep to cattle, after feeding scrapie-contaminated meat and bone meal (MBM). The disease has caused substantial economic losses for the British cattle industry. Because of strict veterinary regulations for the import of adult British cattle by the European Union and for MBM by most of the member states the spread of BSE to continental Europe could be efficiently controlled, and only few cases have been described outside the UK. Here we report the first German case of BSE diagnosed in a Scottish Highland cow. The affected cow was imported into Germany before the import ban for cattle from the UK was implemented. BSE was confirmed by histopathology, immunohistochemistry, animal experiments, immunoblotting and by electron microscopic detection of scrapie-associated fibrils (SAFs).

Animals↗

Hidden amyloidoses.

The pathogenesis as well as the genetic disposition to develop clinical symptoms in transmissible spongiform encephalopathies (e.g. Creutzfeldt-Jakob disease, scrapie, bovine spongiform encephalopathy) relate these diseases to classical noninfectious amyloidoses (familial amyloidotic polyneuropathy as an example) and to Alzheimer's disease. This is not obvious to the nonexpert at first glance. This communication tries to elucidate this association, to reveal which immunochemical techniques have contributed their share.

Alzheimer Disease↗

Neuronal autophagy in experimental scrapie.

In this study we report the formation of giant autophagic vacuoles (AV) in neurons in experimental scrapie in hamsters. Autophagy is an important step in the cellular turnover of proteins and organelles. It is known to occur in neurons under physiological as under pathological conditions. Giant AV, however, are seen very rarely only in pathological states. In our model AV are much more numerous after intracerebral (i.c.) transmission of the scrapie agent than after the transmission via the intraperitoneal route which points to a correlation between the intensity of the process and the period of incubation. As the appearance of the AV in our model is correlated chronologically with that of scrapie-associated fibrils, at least after i.c. transmission, the process may be related to a disturbance of cellular protein metabolism and, thus, to the processing of prion protein.

Animals↗

Virus-induced amyloidosis in scrapie involves a change in covalent linkages in the preamyloid.

Preparations of the preamyloid and the amyloid protein from normal and scrapie hamster brains show different solubilization behaviours towards Triton X-114 extraction. The normal isoform is completely extractable from microsomal membranes by the detergent, whereas the pathological one is not. Both forms can be isolated using preparative SDS electrophoresis as the final step in order to remove all non-covalently associated materials. After removal of the SDS these purified proteins retain their solubility differences against Triton X-114. This demonstrates that at least one distinct modification of the preamyloid protein--which has to be covalent in nature--must have occurred to account for the strong aggregation tendency of the pathological isoform.

Amyloid↗

Chemoprophylaxis of scrapie in mice.

Three applications of the polyanion pentosanpolysulphate about 2 months before infection of mice with scrapie completely protected animals infected with up to 100 LD50, and considerably prolonged the lifespan of those infected with 100 to 10,000 LD50. The clinical diagnosis was confirmed by immunoblot analysis for the protein of scrapie-associated fibrils.

Animals↗

Virus-induced amyloidoses.

After a short introduction into the general concept of amyloidoses and the genetic disposition involved in these diseases, the genetic disposition for unconventional virus diseases (or transmissible spongiform encephalopathies) and the disease specific amyloid are described. Experimental studies on the pathogenesis and the infectious agent suggest that scrapie and related diseases are virus-induced amyloidoses of the brain.

Alzheimer Disease↗

A quantitative assay for tyrosine sulfation and tyrosine phosphorylation in peptides.

A method was developed to measure sulfation and phosphorylation of tyrosine in proteins after alkaline hydrolysis, ion-exchange chromatography, reaction with [3H]dinitrofluorobenzene and subsequent thin-layer chromatography. The method allows the detection of 10-20 pmol of modified tyrosine and was applied to determine the content of tyrosine-phosphate and -sulfate in fibrinogens, thyroglobulin, alpha-casein, cytochrome c and glyceraldehyde dehydrogenase.

Chemical Phenomena↗

Inhibition of human immunodeficiency virus type 1 RNase H by sulfated polyanions.

The reverse transcriptase (RT) activity of human immunodeficiency virus type 1 and other retroviruses is closely associated with a hybrid-degrading RNase H activity which is essential for retroviral replication. We have analyzed the effect of sulfated polysaccharides on human immunodeficiency virus type 1 recombinant RT and RNase H activities in vitro. Heparin, dextran sulfates, and xylan polysulfate were found to be much more potent inhibitors of RNase H than of RT and exhibit 50% infective doses of 0.04 to 0.1 micrograms/ml (corresponding to 0.1 to 25 nM) which is up to 5,000-fold more efficient than that for RT. Inhibitors of RNase H activity are attractive as antiviral drugs.

Anions↗

Scrapie: a virus-induced amyloidosis of the brain.

We have studied the pathogenesis of scrapie in hamsters, in particular the increase of infectivity and the formation of scrapie-associated fibrils in relation to clinical disease. The results of such studies after intraperitoneal or intracerebral infection are consistent with the idea that transmissible spongiform encephalopathies are a type of virus-induced, brain-specific amyloidosis. Therefore, an appropriate name for the class of viruses that cause these diseases might be amyloid-inducing viruses.

Amyloidosis↗