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Arias, R. A.

Publications and source records attributed to Arias, R. A..

2 recordsLinked to original sources

Roles Played by Enhancer of Split Transcription Factors in Drosophila R7 Photoreceptor Specification

When a cell receives multiple developmental signals simultaneously, the intracellular transduction pathways triggered by those signals are coincidentally active. How then, do the cells decode the information contained within those multiple active pathways to derive a precise developmental directive? The specification of the Drosophila R7 photoreceptor is classic model system for investigating such questions. The R7 fate is specified by the combined actions of the of the Notch (N) and receptor tyrosine kinase (RTK) signaling pathways. The two pathways cross-communicate in an integrative mechanism but also supply information independently of each other. Collectively, this information is summed to provide an unambiguous directive for the R7 fate. Our goal is to understand these mechanisms. Here, we examine how N activity represses transcription of the phyllopod gene in the process of information integration with the RTK pathway, and how it represses expression of the seven-up gene in an independent mechanism needed for R7 fate. We describe how N activity achieves these transcriptional repressions, and identify Enhancer of Split transcription factors as the mediators of those actions. Summary StatementThis work examines the role played by Enhancer of Split transcription factors in mediating N signals in Drosophila R7 photoreceptor specification.

developmental biology↗

Decoding a cell fate: How Notch and Receptor Tyrosine Kinase Signals Specify the Drosophila R7 Photoreceptor

The Drosophila R7 photoreceptor is a classic model for understanding how integration of signaling information can provide precise fate directives. It entails extensive interactions between the RTK and Notch signaling pathways, with Notch providing three distinct functions: it both opposes and promotes the general photoreceptor fate, and it determines the specific photoreceptor type. The RTK pathway promotes transcription of phyl - a gene expression critical for photoreceptor specification. We show that Notch activity induces transcription of yan which encodes a transcriptional repressor of phyl. This defines the antagonism between the two pathways, with RTK promoting and Notch opposing phyl transcription. We previously showed that Notch provides Sevenless to the cell to allow RTK pathway hyperactivation to overcome the Notch repression, and we now identify the regulation of Yan activity as the integration site of the RTK and Notch functions. Once the cell is specified as a photoreceptor, the third Notch function then prevents seven-up (svp) transcription. The Svp transcription factor directs the R1/6 photoreceptor fate, and the prevention of its expression ensures the default R7 specification. Summary StatementThis paper examines how the different signals received by the Drosophila R7 photoreceptor precursor are decoded and used to direct the cells appropriate differentiation pathway.

developmental biology↗