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Updated: Aug 2, 2026

Dissection and Staining of Drosophila Larval Ovaries
Published on: May 13, 2011
A specific ovarian tumor protein isoform is required for efficient differentiation of germ cells in Drosophila
1Department of Biochemistry and Biophysics, University of North Carolina, Chapel Hill 27599.
Abstract:
Mutations within the ovarian tumor (otu) gene result in abnormal ovarian development. It has been proposed that otu phenotypes result from abnormal germ cell division and differentiation. To understand better what role otu performs in oogenesis we have undertaken an analysis of protein expression from the otu locus. Anti-otu antibodies recognize two proteins from Drosophila ovary extracts with apparent molecular masses of 98 and 104 kD. Sequence analysis of otu cDNAs suggests that these proteins are translated from two mRNAs generated by alternative splicing of a 126-bp exon between the sixth and seventh exon of the smaller transcript. Analysis of otu protein expression in eight mutants indicates a correlation between the accumulation of the 104-kD isoform and predifferentiated germ cells and suggests that there is a developmental shift in the accumulation of the two isoforms upon differentiation of germ cells. Furthermore, the 104-kD isoform appears to be required for efficient differentiation of germ cells. Immunostaining of otu proteins is restricted to the cytoplasm of germ cells, and a rapid loss of oocyte immunostaining during stage 11 suggests that there is a rapid and selective degradation of otu proteins within the oocyte but not within its 15 interconnected nurse cells.
Insights
Mutations in the ovarian tumor (otu) gene disrupt oogenesis. The 104-kD otu protein isoform is crucial for germ cell differentiation and is selectively degraded in oocytes.
Area of Science:
- Developmental Biology
- Genetics
- Cell Biology
Background:
- Mutations in the ovarian tumor (otu) gene lead to abnormal ovarian development.
- Ovarian tumor phenotypes are linked to disruptions in germ cell division and differentiation during oogenesis.
Purpose of the Study:
- To investigate the role of the ovarian tumor (otu) gene in oogenesis through protein expression analysis.
- To understand the function of different otu protein isoforms in germ cell development.
Main Methods:
- Analysis of protein expression from the otu locus using anti-otu antibodies.
- Sequence analysis of otu cDNAs to identify alternative splicing.
- Immunostaining to determine the localization and degradation patterns of otu proteins in Drosophila ovaries.
Main Results:
- Two otu proteins (98 and 104 kD) were identified, arising from alternative splicing.
- The 104-kD isoform accumulates in predifferentiated germ cells and is essential for germ cell differentiation.
- Otu proteins are localized in the cytoplasm and rapidly degraded in oocytes but not nurse cells after stage 11.
Conclusions:
- The ovarian tumor (otu) gene encodes two protein isoforms with distinct roles in oogenesis.
- The 104-kD otu isoform is critical for germ cell differentiation, while its selective degradation in oocytes suggests a regulatory mechanism.
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