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Bhaskar, P. K.

Publications and source records attributed to Bhaskar, P. K..

2 recordsLinked to original sources

The pioneer factor Zelda induces male-to-female somatic sex reversal in adult tissues

Somatic sex identity must be maintained throughout adulthood for tissue function. Adult somatic stem cells in the Drosophila testis (i.e., CySCs) lacking the transcription factor Chinmo are reprogrammed to their ovarian counterparts by induction of female-specific TraF, but this is not mechanistically understood. Pioneer factors play central roles in direct reprogramming, and many upregulated genes in chinmo-/- CySCs contain binding sites for the pioneer factor Zelda (Zld). microRNAs repress zld mRNA in wild type CySCs, but they are downregulated after Chinmo loss, allowing for zld mRNA translation. Zld depletion from chinmo-/- CySCs suppresses feminization, and ectopic Zld induces TraF and feminizes wild-type CySCs. qkr58E-2 and ecdysone receptor (EcR), direct Zld targets in the embryo, are female-biased in adult gonads and upregulated in chinmo-/- CySCs. The RNA-binding protein Qkr58E-2 produces TraF, while EcR promotes female-biased gene expression. Ectopic Zld feminizes adult male adipose tissue, demonstrating that Zld can instruct female and override male identity in adult XY tissues. HighlightsO_LIzld mRNA is repressed by microRNAs in XY somatic gonadal cells C_LIO_LIZld is upregulated in and required for sex reversal of XY chinmo-/- cells C_LIO_LIZld induces Qkr58E-2 and EcR, which cause TraF and female-biased transcription C_LIO_LIZld feminizes XY adipose cells by inducing TraF and downregulating Chinmo C_LI

developmental biology↗

Germline Sex Determination regulates sex-specific signaling between germline stem cells and their niche

The establishment of sexual identity in germ cells is critical for the development of male and female germline stem cells (GSCs) and production of sperm vs. eggs. Thus, this process is essential for sexual reproduction and human fertility. Germ cells depend on signals from the somatic gonad to determine their sex, but in organisms such as flies, mice and humans, the sex chromosome genotype of the germ cells is also important for germline sexual development. How somatic signals and germ cell-intrinsic cues act together to regulate germline sex determination is a key question about which little is known. We have found that JAK/STAT signaling in the GSC niche promotes male identity in germ cells and GSCs, in part by activating expression of the epigenetic reader Phf7. We have also found that JAK/STAT signaling is blocked in XX (female) germ cells through the intrinsic action of the sex determination gene Sex lethal, which preserves female identity. Thus, an important function of germline sexual identity is to control how GSCs respond to signals in their niche environment.

developmental biology↗