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Preparation of Adult Drosophila Eyes for Thin Sectioning and Microscopic Analysis
Published on: August 27, 2011
Knockdown of PR-DUB subunit calypso in the developing Drosophila eye and wing results in mis-patterned tissues with
Abstract:
The deubiquitinating enzyme BAP1, the catalytic subunit of the PR-DUB complex, is implicated in several cancers, in the familial cancer syndrome BAP1 Tumor Predisposition Syndrome, and in the neurodevelopmental disorder Küry -Isidor syndrome. In Drosophila, there are numerous reports in the literature describing developmental patterning phenotypes for several chromatin regulators including the discovery of Polycomb itself, but corresponding adult morphological phenotypes caused by developmental dysregulation of Drosophila BAP1 ortholog calypso ( caly ) are less well-described. We report here that knockdown of caly in the eye and wing produce concomitant chromatin dysregulation phenotypes. RNAi to caly in the early eye reduces survival and leads to changes in eye size and shape including eye outgrowths, some of which resemble homeotic transformations whereas others resemble tumor-like outgrowths seen in other fly cancer models. Mosaic eyes containing caly loss-of-function tissue phenocopy caly RNAi. Knocking down caly across the wing disrupts wing shape and patterning including effects on wing vein pattern. This phenotypic characterization reinforces the growing body of literature detailing developmental mis-patterning driven by chromatin dysregulation and serves as a baseline for future mechanistic studies to understand the role of BAP1 in development and disease.
Article Summary:
PR-DUB catalytic subunit deubiquitinating enzyme BAP1 plays an important role in tumor suppression and chromatin regulation. Whereas many chromatin regulators are well-characterized for their roles in patterning, the mis-patterning phenotypes in adult structure for dysregulating BAP1 ortholog calypso ( caly ) in development are less well described. We report mis-patterned adult eye and wing phenotypes caused by caly RNAi in the developing eye and wing respectively.
Insights
Knocking down the BAP1 ortholog calypso in Drosophila disrupts eye and wing development, causing mispatterning and tumor-like outgrowths. This highlights calypso's role in chromatin regulation and adult morphology.
Area of Science:
- Developmental Biology
- Genetics
- Cancer Research
Background:
- The deubiquitinating enzyme BAP1 is crucial for tumor suppression and chromatin regulation.
- While many chromatin regulators' developmental roles are known, adult morphological phenotypes from BAP1 ortholog dysregulation are less understood.
- BAP1 is linked to cancers and developmental disorders like BAP1 Tumor Predisposition Syndrome and Küry-Isidor syndrome.
Purpose of the Study:
- To characterize adult morphological phenotypes resulting from the dysregulation of the Drosophila BAP1 ortholog, calypso (caly).
- To investigate the role of calypso in developmental patterning of the eye and wing in Drosophila.
- To establish a baseline for future studies on BAP1's function in development and disease.
Main Methods:
- RNA interference (RNAi) was used to knock down caly expression in developing Drosophila eyes and wings.
- Mosaic analysis was performed on eyes with caly loss-of-function tissue.
- Phenotypic characterization of adult eye and wing structures was conducted.
Main Results:
- Calypso knockdown in the eye led to reduced survival, altered eye size and shape, and outgrowths resembling homeotic transformations or tumor-like growths.
- Mosaic eyes with caly loss-of-function mimicked RNAi phenotypes.
- Calypso knockdown in the wing disrupted wing shape, patterning, and vein formation.
Conclusions:
- Dysregulation of calypso causes significant adult morphological defects in Drosophila eyes and wings.
- These findings demonstrate developmental mispatterning driven by chromatin dysregulation.
- The study provides a foundation for understanding BAP1's role in development and disease through its Drosophila ortholog.

