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Dynamic Notch Signaling Specifies Each Cell Fate in Drosophila Spermathecal Lineage

Spermathecae are glandular organs in the insect female reproductive tract that play essential roles in insect reproduction; however, the molecular mechanism involved in their development is largely unknown. Drosophila spermathecae consist of class-III secretory units, in which each secretory cell (S...

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Autores principales: Shen, Wei, Sun, Jianjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5427495/
https://www.ncbi.nlm.nih.gov/pubmed/28258114
http://dx.doi.org/10.1534/g3.117.040212
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author Shen, Wei
Sun, Jianjun
author_facet Shen, Wei
Sun, Jianjun
author_sort Shen, Wei
collection PubMed
description Spermathecae are glandular organs in the insect female reproductive tract that play essential roles in insect reproduction; however, the molecular mechanism involved in their development is largely unknown. Drosophila spermathecae consist of class-III secretory units, in which each secretory cell (SC) discharges its products to the central lumen through an end-apparatus and a canal. Secretory unit formation in Drosophila spermathecae utilizes a fixed cell lineage, in which each secretory unit precursor (SUP) divides to produce one pIIb cell and one pIIa cell. The former differentiates into an apical cell (AC), whereas the latter divides again to produce an SC and a basal cell (BC). It is unclear how each cell acquires its identity and contributes to secretory unit formation. Here, we demonstrate that Notch signaling is required and sufficient for the specification of lumen epithelial precursors (LEPs; vs. SUPs), pIIb (vs. pIIa), and SCs (vs. BCs) sequentially. To our surprise, Notch activation in LEPs and SCs apparently utilizes different ligand mechanisms. In addition, Notch signaling both suppresses and activates transcription factors Hindsight (Hnt) and Cut during spermathecal lineage specification, supporting the notion that Notch signaling can have opposite biological outcomes in different cellular environments. Furthermore, LEP-derived epithelial cells (ECs) and ACs show distinct cellular morphology and are essential for securing secretory units to the epithelial lumen. Our work demonstrates, for the first time, the dynamic role of Notch signaling in binary cell fate determination in Drosophila spermathecae and the role of ECs and ACs in secretory unit formation.
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spelling pubmed-54274952017-05-12 Dynamic Notch Signaling Specifies Each Cell Fate in Drosophila Spermathecal Lineage Shen, Wei Sun, Jianjun G3 (Bethesda) Investigations Spermathecae are glandular organs in the insect female reproductive tract that play essential roles in insect reproduction; however, the molecular mechanism involved in their development is largely unknown. Drosophila spermathecae consist of class-III secretory units, in which each secretory cell (SC) discharges its products to the central lumen through an end-apparatus and a canal. Secretory unit formation in Drosophila spermathecae utilizes a fixed cell lineage, in which each secretory unit precursor (SUP) divides to produce one pIIb cell and one pIIa cell. The former differentiates into an apical cell (AC), whereas the latter divides again to produce an SC and a basal cell (BC). It is unclear how each cell acquires its identity and contributes to secretory unit formation. Here, we demonstrate that Notch signaling is required and sufficient for the specification of lumen epithelial precursors (LEPs; vs. SUPs), pIIb (vs. pIIa), and SCs (vs. BCs) sequentially. To our surprise, Notch activation in LEPs and SCs apparently utilizes different ligand mechanisms. In addition, Notch signaling both suppresses and activates transcription factors Hindsight (Hnt) and Cut during spermathecal lineage specification, supporting the notion that Notch signaling can have opposite biological outcomes in different cellular environments. Furthermore, LEP-derived epithelial cells (ECs) and ACs show distinct cellular morphology and are essential for securing secretory units to the epithelial lumen. Our work demonstrates, for the first time, the dynamic role of Notch signaling in binary cell fate determination in Drosophila spermathecae and the role of ECs and ACs in secretory unit formation. Genetics Society of America 2017-03-03 /pmc/articles/PMC5427495/ /pubmed/28258114 http://dx.doi.org/10.1534/g3.117.040212 Text en Copyright © 2017 Shen and Sun http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Shen, Wei
Sun, Jianjun
Dynamic Notch Signaling Specifies Each Cell Fate in Drosophila Spermathecal Lineage
title Dynamic Notch Signaling Specifies Each Cell Fate in Drosophila Spermathecal Lineage
title_full Dynamic Notch Signaling Specifies Each Cell Fate in Drosophila Spermathecal Lineage
title_fullStr Dynamic Notch Signaling Specifies Each Cell Fate in Drosophila Spermathecal Lineage
title_full_unstemmed Dynamic Notch Signaling Specifies Each Cell Fate in Drosophila Spermathecal Lineage
title_short Dynamic Notch Signaling Specifies Each Cell Fate in Drosophila Spermathecal Lineage
title_sort dynamic notch signaling specifies each cell fate in drosophila spermathecal lineage
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5427495/
https://www.ncbi.nlm.nih.gov/pubmed/28258114
http://dx.doi.org/10.1534/g3.117.040212
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AT sunjianjun dynamicnotchsignalingspecifieseachcellfateindrosophilaspermathecallineage