Sex-lethalFacilitates the Transition From Germline Stem Cell to Committed Daughter Cell in the Drosophila Ovary
Sex-lethalFacilitates the Transition From Germline Stem Cell to Committed Daughter Cell in the Drosophila Ovary
AbstractIn Drosophila, the female-specific SEX-LETHAL (SXL) protein is required for oogenesis, but how Sxl interfaces with the genetic circuitry controlling oogenesis remains unknown. Here we use an allele of sans fille (snf) that specifically eliminates SXL protein in germ cells to carry out a detailed genetic and cell biological analysis of the resulting ovarian tumor phenotype. We find that tumor growth requires both Cyclin B and zero population growth, demonstrating that these mutant cells retain at least some of the essential growth-control mechanisms used by wild-type germ cells. Using a series of molecular markers, we establish that while the tumor often contains at least one apparently bona fide germline stem cell, the majority of cells exhibit an intermediate fate between a stem cell and its daughter cell fated to differentiate. In addition, snf tumors misexpress a select group of testis-enriched markers, which, remarkably, are also misexpressed in ovarian tumors that arise from the loss of bag of marbles (bam). Results of genetic epistasis experiments further reveal that bam's differentiation-promoting function depends on Sxl. Together these data demonstrate a novel role for Sxl in the lineage progression from stem cell to committed daughter cell and suggest a model in which Sxl partners with bam to facilitate this transition.
- Case Western Reserve University United States
Male, Ovarian Neoplasms, Reverse Transcriptase Polymerase Chain Reaction, Stem Cells, Blotting, Western, Ovary, Fluorescent Antibody Technique, RNA-Binding Proteins, Cyclin B, Animals, Genetically Modified, Drosophila melanogaster, Germ Cells, Oogenesis, Testis, Animals, Drosophila Proteins, Female, RNA, Messenger
Male, Ovarian Neoplasms, Reverse Transcriptase Polymerase Chain Reaction, Stem Cells, Blotting, Western, Ovary, Fluorescent Antibody Technique, RNA-Binding Proteins, Cyclin B, Animals, Genetically Modified, Drosophila melanogaster, Germ Cells, Oogenesis, Testis, Animals, Drosophila Proteins, Female, RNA, Messenger
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