Cargando…

A large-scale in vivo RNAi screen to identify genes involved in Notch-mediated follicle cell differentiation and cell cycle switches

During Drosophila oogenesis, follicle cells sequentially undergo three distinct cell-cycle programs: the mitotic cycle, endocycle, and gene amplification. Notch signaling plays a central role in regulating follicle-cell differentiation and cell-cycle switches; its activation is essential for the mit...

Descripción completa

Detalles Bibliográficos
Autores principales: Jia, Dongyu, Soylemez, Muhammed, Calvin, Gabriel, Bornmann, Randy, Bryant, Jamal, Hanna, Cameron, Huang, Yi-Chun, Deng, Wu-Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4513280/
https://www.ncbi.nlm.nih.gov/pubmed/26205122
http://dx.doi.org/10.1038/srep12328
_version_ 1782382617808601088
author Jia, Dongyu
Soylemez, Muhammed
Calvin, Gabriel
Bornmann, Randy
Bryant, Jamal
Hanna, Cameron
Huang, Yi-Chun
Deng, Wu-Min
author_facet Jia, Dongyu
Soylemez, Muhammed
Calvin, Gabriel
Bornmann, Randy
Bryant, Jamal
Hanna, Cameron
Huang, Yi-Chun
Deng, Wu-Min
author_sort Jia, Dongyu
collection PubMed
description During Drosophila oogenesis, follicle cells sequentially undergo three distinct cell-cycle programs: the mitotic cycle, endocycle, and gene amplification. Notch signaling plays a central role in regulating follicle-cell differentiation and cell-cycle switches; its activation is essential for the mitotic cycle/endocycle (M/E) switch. Cut, a linker between Notch signaling and cell-cycle regulators, is specifically downregulated by Notch during the endocycle stage. To determine how signaling pathways coordinate during the M/E switch and to identify novel genes involved in follicle cell differentiation, we performed an in vivo RNAi screen through induced knockdown of gene expression and examination of Cut expression in follicle cells. We screened 2205 RNAi lines and found 33 genes regulating Cut expression during the M/E switch. These genes were confirmed with the staining of two other Notch signaling downstream factors, Hindsight and Broad, and validated with multiple independent RNAi lines. We applied gene ontology software to find enriched biological meaning and compared our results with other publications to find conserved genes across tissues. Specifically, we found earlier endocycle entry in anterior follicle cells than those in the posterior, identified that the insulin-PI3K pathway participates in the precise M/E switch, and suggested Nejire as a cofactor of Notch signaling during oogenesis.
format Online
Article
Text
id pubmed-4513280
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-45132802015-07-29 A large-scale in vivo RNAi screen to identify genes involved in Notch-mediated follicle cell differentiation and cell cycle switches Jia, Dongyu Soylemez, Muhammed Calvin, Gabriel Bornmann, Randy Bryant, Jamal Hanna, Cameron Huang, Yi-Chun Deng, Wu-Min Sci Rep Article During Drosophila oogenesis, follicle cells sequentially undergo three distinct cell-cycle programs: the mitotic cycle, endocycle, and gene amplification. Notch signaling plays a central role in regulating follicle-cell differentiation and cell-cycle switches; its activation is essential for the mitotic cycle/endocycle (M/E) switch. Cut, a linker between Notch signaling and cell-cycle regulators, is specifically downregulated by Notch during the endocycle stage. To determine how signaling pathways coordinate during the M/E switch and to identify novel genes involved in follicle cell differentiation, we performed an in vivo RNAi screen through induced knockdown of gene expression and examination of Cut expression in follicle cells. We screened 2205 RNAi lines and found 33 genes regulating Cut expression during the M/E switch. These genes were confirmed with the staining of two other Notch signaling downstream factors, Hindsight and Broad, and validated with multiple independent RNAi lines. We applied gene ontology software to find enriched biological meaning and compared our results with other publications to find conserved genes across tissues. Specifically, we found earlier endocycle entry in anterior follicle cells than those in the posterior, identified that the insulin-PI3K pathway participates in the precise M/E switch, and suggested Nejire as a cofactor of Notch signaling during oogenesis. Nature Publishing Group 2015-07-24 /pmc/articles/PMC4513280/ /pubmed/26205122 http://dx.doi.org/10.1038/srep12328 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Jia, Dongyu
Soylemez, Muhammed
Calvin, Gabriel
Bornmann, Randy
Bryant, Jamal
Hanna, Cameron
Huang, Yi-Chun
Deng, Wu-Min
A large-scale in vivo RNAi screen to identify genes involved in Notch-mediated follicle cell differentiation and cell cycle switches
title A large-scale in vivo RNAi screen to identify genes involved in Notch-mediated follicle cell differentiation and cell cycle switches
title_full A large-scale in vivo RNAi screen to identify genes involved in Notch-mediated follicle cell differentiation and cell cycle switches
title_fullStr A large-scale in vivo RNAi screen to identify genes involved in Notch-mediated follicle cell differentiation and cell cycle switches
title_full_unstemmed A large-scale in vivo RNAi screen to identify genes involved in Notch-mediated follicle cell differentiation and cell cycle switches
title_short A large-scale in vivo RNAi screen to identify genes involved in Notch-mediated follicle cell differentiation and cell cycle switches
title_sort large-scale in vivo rnai screen to identify genes involved in notch-mediated follicle cell differentiation and cell cycle switches
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4513280/
https://www.ncbi.nlm.nih.gov/pubmed/26205122
http://dx.doi.org/10.1038/srep12328
work_keys_str_mv AT jiadongyu alargescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT soylemezmuhammed alargescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT calvingabriel alargescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT bornmannrandy alargescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT bryantjamal alargescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT hannacameron alargescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT huangyichun alargescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT dengwumin alargescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT jiadongyu largescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT soylemezmuhammed largescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT calvingabriel largescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT bornmannrandy largescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT bryantjamal largescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT hannacameron largescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT huangyichun largescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches
AT dengwumin largescaleinvivornaiscreentoidentifygenesinvolvedinnotchmediatedfolliclecelldifferentiationandcellcycleswitches