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Biomedical subjects

D Wesche

Publications and source records attributed to D Wesche.

4 recordsLinked to original sources

Human erythrocyte Band-3 has an altered N terminus in malaria-resistant Melanesian ovalocytosis.

There is a high prevalence of the erythrocyte polymorphism ovalocytosis associated with reduced susceptibility to malaria in Papua New Guinea. The major erythrocyte integral membrane protein, Band-3, showed markedly increased phosphorylation in whole cells or isolated ghosts from ovalocytic individuals. The cytoplasmic domain of the ovalocyte Band-3 was found to be approx. 3 kDa larger than the normocytic protein. The N-terminal sequence of the ovalocytic Band-3 was different from the reported sequence for human Band-3, suggesting that the increased size results from an N-terminal extension. Since this is the region of Band-3 which is phosphorylated and interacts with the red cell cytoskeleton, it is likely that this alteration in ovalocytic Band-3 is the underlying cause of the diverse alterations in ovalocytic cells including increased phosphorylation, increased membrane rigidity, decreased agglutinability by blood group antibodies and refractoriness to invasion by malarial parasites.

Anion Exchange Protein 1, Erythrocyte

Radioimmunoassay of enkephalins. Regional distribution in rat brain after morphine treatment and hypophysectomy.

Using highly sensitive and highly specific antisera methionine- and leucine-enkephalin levels were determined in various areas of the rat brain. The highest content of both enkephalins was found in the striatum and the hypothalamus, whereas in the hippocampus, the cerebellum and the cortex only a low content was present. The ratio methionine-enkephalin/leucine-enkephalin was about three. Neither acute or chronic morphine treatment nor precipitated morphine withdrawal induced significant changes in enkephalin levels in any brain region. Also hypophysectomy did not affect the enkephalin content of the various brain regions.

Animals