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Preparation of Developing and Adult Drosophila Brains and Retinae for Live Imaging
Published on: March 15, 2010
CREB binding protein functions during successive stages of eye development in Drosophila
Justin P Kumar1, Tazeen Jamal, Alex Doetsch
1Department of Biology, Indiana University, Bloomington, Indiana 47401, USA. jkumar@bio.indiana.edu
Abstract:
During the development of the compound eye of Drosophila several signaling pathways exert both positive and inhibitory influences upon an array of nuclear transcription factors to produce a near-perfect lattice of unit eyes or ommatidia. Individual cells within the eye are exposed to many extracellular signals, express multiple surface receptors, and make use of a large complement of cell-subtype-specific DNA-binding transcription factors. Despite this enormous complexity, each cell will make the correct developmental choice and adopt the appropriate cell fate. How this process is managed remains a poorly understood paradigm. Members of the CREB binding protein (CBP)/p300 family have been shown to influence development by (1) acting as bridging molecules between the basal transcriptional machinery and specific DNA-binding transcription factors, (2) physically interacting with terminal members of signaling cascades, (3) acting as transcriptional coactivators of downstream target genes, and (4) playing a key role in chromatin remodeling. In a screen for new genes involved in eye development we have identified the Drosophila homolog of CBP as a key player in both eye specification and cell fate determination. We have used a variety of approaches to define the role of CBP in eye development on a cell-by-cell basis.
Insights
The study identifies the Drosophila homolog of CREB binding protein (CBP) as crucial for eye development. CBP plays a key role in cell specification and fate determination during compound eye formation.
Area of Science:
- Developmental Biology
- Genetics
- Molecular Biology
Background:
- Drosophila compound eye development involves complex signaling pathways influencing transcription factors to form ommatidia.
- Cells integrate multiple signals and express diverse receptors and transcription factors to achieve correct cell fate.
- The precise mechanisms governing cell fate decisions in this complex system are not fully understood.
Purpose of the Study:
- To investigate the role of CREB binding protein (CBP) in Drosophila eye development.
- To identify novel genes involved in eye specification and cell fate determination.
- To elucidate the function of CBP in regulating cell-by-cell developmental choices.
Main Methods:
- Genetic screens to identify new genes in eye development.
- Utilizing the Drosophila homolog of CBP.
- Employing various experimental approaches for cell-specific analysis.
Main Results:
- The Drosophila homolog of CBP was identified as a key player in eye development.
- CBP is involved in both eye specification and cell fate determination.
- The study provides a cell-by-cell definition of CBP's role.
Conclusions:
- Drosophila CBP is essential for proper compound eye formation.
- CBP acts as a critical regulator of cell fate decisions during eye development.
- Understanding CBP's function offers insights into developmental processes.

