Literature DB >> 36040415

A Notch-dependent transcriptional mechanism controls expression of temporal patterning factors in Drosophila medulla.

Alokananda Ray1, Xin Li1.   

Abstract

Temporal patterning is an important mechanism for generating a great diversity of neuron subtypes from a seemingly homogenous progenitor pool in both vertebrates and invertebrates. Drosophila neuroblasts are temporally patterned by sequentially expressed Temporal Transcription Factors (TTFs). These TTFs are proposed to form a transcriptional cascade based on mutant phenotypes, although direct transcriptional regulation between TTFs has not been verified in most cases. Furthermore, it is not known how the temporal transitions are coupled with the generation of the appropriate number of neurons at each stage. We use neuroblasts of the Drosophila optic lobe medulla to address these questions and show that the expression of TTFs Sloppy-paired 1/2 (Slp1/2) is directly regulated at the transcriptional level by two other TTFs and the cell-cycle dependent Notch signaling through two cis-regulatory elements. We also show that supplying constitutively active Notch can rescue the delayed transition into the Slp stage in cell cycle arrested neuroblasts. Our findings reveal a novel Notch-pathway dependent mechanism through which the cell cycle progression regulates the timing of a temporal transition within a TTF transcriptional cascade.
© 2022, Ray and Li.

Entities:  

Keywords:  D. melanogaster; developmental biology; neural stem cells; neuroblasts; neuroscience; notch signaling; temporal patterning; temporal transcription factors; transcription regulation

Mesh:

Substances:

Year:  2022        PMID: 36040415      PMCID: PMC9427115          DOI: 10.7554/eLife.75879

Source DB:  PubMed          Journal:  Elife        ISSN: 2050-084X            Impact factor:   8.713


  101 in total

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7.  A GAL4-driver line resource for Drosophila neurobiology.

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Journal:  Cell Rep       Date:  2012-10-11       Impact factor: 9.423

8.  Temporal patterning of Drosophila medulla neuroblasts controls neural fates.

Authors:  Xin Li; Ted Erclik; Claire Bertet; Zhenqing Chen; Roumen Voutev; Srinidhi Venkatesh; Javier Morante; Arzu Celik; Claude Desplan
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9.  Control of Neural Daughter Cell Proliferation by Multi-level Notch/Su(H)/E(spl)-HLH Signaling.

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Journal:  PLoS Genet       Date:  2016-04-12       Impact factor: 5.917

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