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Journal ArticleDOI

Targeted gene expression as a means of altering cell fates and generating dominant phenotypes.

Andrea H. Brand, +1 more
- 01 Jun 1993 - 
- Vol. 118, Iss: 2, pp 401-415
TLDR
The GAL4 system, a system for targeted gene expression that allows the selective activation of any cloned gene in a wide variety of tissue- and cell-specific patterns, has been designed and used to expand the domain of embryonic expression of the homeobox protein even-skipped.
Abstract
We have designed a system for targeted gene expression that allows the selective activation of any cloned gene in a wide variety of tissue- and cell-specific patterns. The gene encoding the yeast transcriptional activator GAL4 is inserted randomly into the Drosophila genome to drive GAL4 expression from one of a diverse array of genomic enhancers. It is then possible to introduce a gene containing GAL4 binding sites within its promoter, to activate it in those cells where GAL4 is expressed, and to observe the effect of this directed misexpression on development. We have used GAL4-directed transcription to expand the domain of embryonic expression of the homeobox protein even-skipped. We show that even-skipped represses wingless and transforms cells that would normally secrete naked cuticle into denticle secreting cells. The GAL4 system can thus be used to study regulatory interactions during embryonic development. In adults, targeted expression can be used to generate dominant phenotypes for use in genetic screens. We have directed expression of an activated form of the Dras2 protein, resulting in dominant eye and wing defects that can be used in screens to identify other members of the Dras2 signal transduction pathway.

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Citations
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Journal ArticleDOI

Genetic Dissection of Neural Circuits: A Decade of Progress.

TL;DR: Evaluated methods allow systematic classification of cell types and provide genetic access to diverse neuronal types for studies of connectivity and neural coding during behavior in invertebrate and vertebrate organisms.
Journal ArticleDOI

Making a better RNAi vector for Drosophila: use of intron spacers.

TL;DR: A transgene containing inverted repeats separated by a functional intron such that mRNA produced by the transgenes is predicted to form loopless hairpin RNA following splicing, and the presence of the intron spacer greatly enhances the stability of inverted-repeat sequences in bacteria, facilitating the cloning procedure.
Journal ArticleDOI

twin of eyeless, a second Pax-6 gene of Drosophila, acts upstream of eyeless in the control of eye development

TL;DR: Drosophila contains a second Pax-6 gene, twin of eyeless (toy), due to a duplication during insect evolution, which is required for initiation of ey expression in the embryo and acts through Ey to activate the eye developmental program.
Journal ArticleDOI

Uncoupling cadherin-based adhesion from wingless signalling in Drosophila.

TL;DR: It is found that overexpression of either construct mimics wingless phenotypes, thereby uncoupling changes in adhesion from signalling effects, and it is demonstrated that both constructs titrate Armadillo from a 'signalling' pool which is functionally distinct from the junctional pool.
Journal ArticleDOI

Analysis of partner of inscuteable, a Novel Player of Drosophila Asymmetric Divisions, Reveals Two Distinct Steps in Inscuteable Apical Localization

TL;DR: It is shown here that Partner of Inscuteable (Pins), a new component of asymmetric divisions, is required for InScuteable to asymmetrically localize.
References
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Book

The Genome of Drosophila Melanogaster

TL;DR: Chromosomes: Deficiencies, Inversions, and Transposable Elements.
Book

The Embryonic Development of Drosophila melanogaster

TL;DR: Stages of Drosophila Embryogenesis, some Aspects of Segmentation, and a Fate Map of the Blastoderm are described.
Journal ArticleDOI

How eukaryotic transcriptional activators work

TL;DR: A specific protein, bound to DNA, can activate transcription of a wide array of genes in many eukaryotes and is controlled by the immune system.
Journal ArticleDOI

A stable genomic source of P element transposase in Drosophila melanogaster.

TL;DR: A single P element insert in Drosophila melanogaster, called P[ry+ delta 2-3](99B), is described that caused mobilization of other elements at unusually high frequencies, yet is itself remarkably stable.
Book

Drosophila: A Practical Approach

D. B. Roberts
TL;DR: The localisation of RNAs in drosophila tissue sections by in situ hybridisation injecting eggs P element-mediated transformation and Methods of marking cells Cell surface antigens Preparation of nucleic acids.
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