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Biomedical subjects

M Gschwind

Publications and source records attributed to M Gschwind.

5 recordsLinked to original sources

Introduction of hereditary disease-associated mutations into the beta-amyloid precursor protein gene of mouse embryonic stem cells: a comparison of homologous recombination methods.

Two different approaches for introducing pathogenic mutations into the beta-amyloid precursor protein gene in mouse embryonic stem cells were compared. Both approaches require two sequential modifications of the targeting locus by homologous recombinations. One approach was a "targeting-in-out" procedure that is based on a double-replacement strategy, and the other was a "hit-and-run" procedure that makes use of an unstable genomic duplication after vector integration. Both approaches showed similar targeting frequencies for the first step. In the targeting-in-out procedure, targeted-in embryonic stem cell clones with the desired mutation and an intron-located selection cassette were obtained at a high frequency after the first step. Targeting out, however, resulted not only in the expected loss of the intron-located selection cassette but also in unavoidable reversion to wild type. In contrast, pure mutants, i.e., those without additional genomic changes, were generated by the hit-and-run procedure. Although targeted-in embryonic stem cells might be used to generate animals with modified beta-amyloid precursor protein, the hit-and-run procedure appears to be the superior way to target gene modifications in vivo, leading to pure, correct mutants. For further improvements, optimization of the homologous recombination efficiency could be envisaged.

Alzheimer Disease↗

Generation of mice with a 200-kb amyloid precursor protein gene deletion by Cre recombinase-mediated site-specific recombination in embryonic stem cells.

Gene disruptions and deletions of up to 20kb have been generated by homologous recombination with appropriate targeting vectors in murine embryonic stem (ES) cells. Because we could not obtain a deletion of about 200 kb in the mouse amyloid precursor protein gene by the classical technique, we employed strategies involving the insertion of loxP sites upstream and downstream of the region to be deleted by homologous recombination and elicited excision of the loxP-flanked region by introduction of a Cre expression vector into the ES cells. In the first approach, the loxP sequences were inserted in two successive steps and after each step, ES cell clones were isolated and characterized. Deletion of the loxP-flanked sequence was accomplished by introducing the cre gene in a third step. In the second approach, ES cells containing the upstream loxP cassette were electroporated simultaneously with the downstream loxP targeting vector and the Cre expression plasmid. ES cells were obtained that gave rise to chimeric mice capable of germ-line transmission of the deleted amyloid precursor protein allele.

Amino Acid Sequence↗

beta-APP cognitive function versus beta-amyloid--induced cell death.

The beta-amyloid precursor protein (beta-APP) has been hypothesized to play an important role in the establishment of synaptic connections. Icv injections of anti-beta APP antibodies into rat brains produced no appreciable effect on subsequent learning of a passive avoidance task whereas memory assessed 1 day later in a retention test was impaired in anti-beta-APP--but not control-IgG-injected animals. This suggests a possible involvement of beta-APPs in cognitive functions. In order to evaluate the properties of the proteolytic A beta-fragment accumulating in Alzheimer's disease brains, four different neuronal cell types were exposed to A beta 1-42 for 24 hours. All cells degenerated in response to A beta, yet chromosomal condensation and internucleosomal DNA fragmentation, typical for apoptosis, occurred in only three of the cell types tested. These findings suggest that beta-APPs may play an important role in cognitive processes and additionally, that their alternative proteolytic product A beta may be differentially toxic to neuronal cell types, inducing cell death either by necrosis or by apoptosis.

Amyloid beta-Peptides↗

Apoptotic cell death induced by beta-amyloid 1-42 peptide is cell type dependent.

beta-Amyloid peptide (A beta), a proteolytic fragment of the beta-amyloid precursor protein, is a major component of senile plaques in the brain of Alzheimer's disease patients. This neuropathological feature is accompanied by increased neuronal cell loss in the brain and there is evidence that A beta is directly neurotoxic. In the present study reduced cell viability in four different neuroblastoma cell types was observed after treatment with human A beta 1-42 for 1 day. Of the cell types tested rat PC12 and human IMR32 cells were most susceptible to A beta toxicity. Chromosomal condensation and fragmentation of nuclei were seen in PC12, NB2a, and B104 cells but not in IMR32 cells irrespective of their high sensitivity to A beta. Electrophoretic analysis of cellular DNA confirmed internucleosomal DNA fragmentation typical for apoptosis in all cell types except IMR32. These findings suggest that the form of A beta-induced cell death (necrosis or apoptosis) may depend on the cell type.

Amyloid beta-Protein Precursor↗