2009Unpublished venueRequires access

"Lights-Off" phenotype in Drosophila containing an UAS-A42 transgene.

Daijun Ling, Paul M. Salvaterra

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Abstract

Summary The UAS-A42 H29.3 transgenic Drosophila line used to model Alzheimer type neurodegeneration and other phenotypes falls down when transitioned from a light to a dark environment. This unusual phenotype is not dependent on the presence of a Gal4 driver and is thus unrelated to A42 induced proteotoxicity or neurodegeneration. We propose that it may instead be the result of disruption in another gene function caused by the P element insertion site. Since this transgenic line is used by several groups to analyze neurological phenotypes associated with A42 neuronal expression, the results of these studies must be interpreted with caution.

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What this paper is about

Summary The UAS-A42 H29.3 transgenic Drosophila line used to model Alzheimer type neurodegeneration and other phenotypes falls down when transitioned from a light to a dark environment. This unusual phenotype is not dependent on the presence of a Gal4 driver and is thus unrelated to A42 induced proteotoxicity or neurodegeneration. We propose that it may instead be the result of disruption in another gene function caused by the P element insertion site. Since this transgenic line is used by several groups to analyze neurological phenotypes associated with A42 neuronal expression, the results of these studies must be interpreted with caution.

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Available abstract

Summary The UAS-A42 H29.3 transgenic Drosophila line used to model Alzheimer type neurodegeneration and other phenotypes falls down when transitioned from a light to a dark environment. This unusual phenotype is not dependent on the presence of a Gal4 driver and is thus unrelated to A42 induced proteotoxicity or neurodegeneration. We propose that it may instead be the result of disruption in another gene function caused by the P element insertion site. Since this transgenic line is used by several groups to analyze neurological phenotypes associated with A42 neuronal expression, the results of these studies must be interpreted with caution.

Key concepts: Neurodegeneration, Transgene, Phenotype, Proteotoxicity, Biology, Genetically modified mouse, Drosophila (subgenus), Loss function

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"Lights-Off" phenotype in Drosophila containing an UAS-A42 transgene. — Research Paper | ScholarLens