The E2F-DP1 Transcription Factor Complex Regulates Centriole Duplication in Caenorhabditis elegans

Centrioles play critical roles in the organization of microtubule-based structures, from the mitotic spindle to cilia and flagella. In order to properly execute their various functions, centrioles are subjected to stringent copy number control. Central to this control mechanism is a precise duplicat...

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Main Authors: Jacqueline G. Miller, Yan Liu, Christopher W. Williams, Harold E. Smith, Kevin F. O’Connell
Format: Article
Language:English
Published: Oxford University Press 2016-03-01
Series:G3: Genes, Genomes, Genetics
Subjects:
Online Access:http://g3journal.org/lookup/doi/10.1534/g3.115.025577
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spelling doaj-5088b519b7224ed9ae426db6efd586082021-07-02T09:32:21ZengOxford University PressG3: Genes, Genomes, Genetics2160-18362016-03-016370972010.1534/g3.115.02557720The E2F-DP1 Transcription Factor Complex Regulates Centriole Duplication in Caenorhabditis elegansJacqueline G. MillerYan LiuChristopher W. WilliamsHarold E. SmithKevin F. O’ConnellCentrioles play critical roles in the organization of microtubule-based structures, from the mitotic spindle to cilia and flagella. In order to properly execute their various functions, centrioles are subjected to stringent copy number control. Central to this control mechanism is a precise duplication event that takes place during S phase of the cell cycle and involves the assembly of a single daughter centriole in association with each mother centriole . Recent studies have revealed that posttranslational control of the master regulator Plk4/ZYG-1 kinase and its downstream effector SAS-6 is key to ensuring production of a single daughter centriole. In contrast, relatively little is known about how centriole duplication is regulated at a transcriptional level. Here we show that the transcription factor complex EFL-1-DPL-1 both positively and negatively controls centriole duplication in the Caenorhabditis elegans embryo. Specifically, we find that down regulation of EFL-1-DPL-1 can restore centriole duplication in a zyg-1 hypomorphic mutant and that suppression of the zyg-1 mutant phenotype is accompanied by an increase in SAS-6 protein levels. Further, we find evidence that EFL-1-DPL-1 promotes the transcription of zyg-1 and other centriole duplication genes. Our results provide evidence that in a single tissue type, EFL-1-DPL-1 sets the balance between positive and negative regulators of centriole assembly and thus may be part of a homeostatic mechanism that governs centriole assembly.http://g3journal.org/lookup/doi/10.1534/g3.115.025577centriole duplicationC. eleganstranscriptional regulationE2F/DP1SAS-6
collection DOAJ
language English
format Article
sources DOAJ
author Jacqueline G. Miller
Yan Liu
Christopher W. Williams
Harold E. Smith
Kevin F. O’Connell
spellingShingle Jacqueline G. Miller
Yan Liu
Christopher W. Williams
Harold E. Smith
Kevin F. O’Connell
The E2F-DP1 Transcription Factor Complex Regulates Centriole Duplication in Caenorhabditis elegans
G3: Genes, Genomes, Genetics
centriole duplication
C. elegans
transcriptional regulation
E2F/DP1
SAS-6
author_facet Jacqueline G. Miller
Yan Liu
Christopher W. Williams
Harold E. Smith
Kevin F. O’Connell
author_sort Jacqueline G. Miller
title The E2F-DP1 Transcription Factor Complex Regulates Centriole Duplication in Caenorhabditis elegans
title_short The E2F-DP1 Transcription Factor Complex Regulates Centriole Duplication in Caenorhabditis elegans
title_full The E2F-DP1 Transcription Factor Complex Regulates Centriole Duplication in Caenorhabditis elegans
title_fullStr The E2F-DP1 Transcription Factor Complex Regulates Centriole Duplication in Caenorhabditis elegans
title_full_unstemmed The E2F-DP1 Transcription Factor Complex Regulates Centriole Duplication in Caenorhabditis elegans
title_sort e2f-dp1 transcription factor complex regulates centriole duplication in caenorhabditis elegans
publisher Oxford University Press
series G3: Genes, Genomes, Genetics
issn 2160-1836
publishDate 2016-03-01
description Centrioles play critical roles in the organization of microtubule-based structures, from the mitotic spindle to cilia and flagella. In order to properly execute their various functions, centrioles are subjected to stringent copy number control. Central to this control mechanism is a precise duplication event that takes place during S phase of the cell cycle and involves the assembly of a single daughter centriole in association with each mother centriole . Recent studies have revealed that posttranslational control of the master regulator Plk4/ZYG-1 kinase and its downstream effector SAS-6 is key to ensuring production of a single daughter centriole. In contrast, relatively little is known about how centriole duplication is regulated at a transcriptional level. Here we show that the transcription factor complex EFL-1-DPL-1 both positively and negatively controls centriole duplication in the Caenorhabditis elegans embryo. Specifically, we find that down regulation of EFL-1-DPL-1 can restore centriole duplication in a zyg-1 hypomorphic mutant and that suppression of the zyg-1 mutant phenotype is accompanied by an increase in SAS-6 protein levels. Further, we find evidence that EFL-1-DPL-1 promotes the transcription of zyg-1 and other centriole duplication genes. Our results provide evidence that in a single tissue type, EFL-1-DPL-1 sets the balance between positive and negative regulators of centriole assembly and thus may be part of a homeostatic mechanism that governs centriole assembly.
topic centriole duplication
C. elegans
transcriptional regulation
E2F/DP1
SAS-6
url http://g3journal.org/lookup/doi/10.1534/g3.115.025577
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