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Imaging Dpp Release from a Drosophila Wing Disc
Published on: October 30, 2019
The Drosophila poly(A) binding protein-interacting protein, dPaip2, is a novel effector of cell growth
Guylaine Roy1, Mathieu Miron, Kianoush Khaleghpour
1Department of Biochemistry and McGill Cancer Centre, McGill University, Montréal, Québec H3G 1Y6, Canada.
Abstract:
The 3' poly(A) tail of eukaryotic mRNAs and the poly(A) binding protein (PABP) play important roles in the regulation of translation. Recently, a human PABP-interacting protein, Paip2, which disrupts the PABP-poly(A) interaction and consequently inhibits translation, was described. To gain insight into the biological role of Paip2, we studied the Drosophila melanogaster Paip2 (dPaip2). dPaip2 is the bona fide human Paip2 homologue, as it interacts with dPABP, inhibits binding of dPABP to the mRNA poly(A) tail, and reduces translation of a reporter mRNA by approximately 80% in an S2 cell-free translation extract. Ectopic overexpression of dPaip2 in Drosophila wings and wing discs results in a size reduction phenotype, which is due to a decrease in cell number. Clones of cells overexpressing dPaip2 in wing discs also contain fewer cells than controls. This phenotype can be explained by a primary effect on cell growth. Indeed, overexpression of dPaip2 in postreplicative tissues inhibits growth, inasmuch as it reduces ommatidia size in eyes and cell size in the larval fat body. We conclude that dPaip2 inhibits cell growth primarily by inhibiting protein synthesis.
Insights
The study identifies Drosophila Paip2 (dPaip2) as a homolog of human Paip2. Overexpression of dPaip2 inhibits protein synthesis, leading to reduced cell growth and smaller tissues in fruit flies.
Area of Science:
- Molecular Biology
- Developmental Biology
- Genetics
Background:
- The 3' poly(A) tail and poly(A) binding protein (PABP) regulate mRNA translation in eukaryotes.
- Human Paip2 interacts with PABP, disrupts PABP-poly(A) binding, and inhibits translation.
Purpose of the Study:
- To investigate the biological role of Drosophila melanogaster Paip2 (dPaip2), a homolog of human Paip2.
- To determine if dPaip2 affects protein synthesis and cell growth in Drosophila.
Main Methods:
- Studied dPaip2's interaction with dPABP in S2 cell-free extracts.
- Assessed dPaip2's effect on reporter mRNA translation.
- Examined phenotypes of dPaip2 overexpression in Drosophila wings, wing discs, eyes, and larval fat body.
Main Results:
- dPaip2 interacts with dPABP and inhibits dPABP binding to the poly(A) tail.
- dPaip2 reduced reporter mRNA translation by approximately 80% in vitro.
- Ectopic dPaip2 overexpression in Drosophila caused reduced tissue size due to decreased cell number and inhibited cell growth.
Conclusions:
- dPaip2 is a functional homolog of human Paip2.
- dPaip2 inhibits protein synthesis, thereby suppressing cell growth and tissue development in Drosophila.
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