DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence.

Quiescence, an actively-maintained reversible state of cell cycle arrest, is not well understood. PTEN is one of the most frequently lost tumor suppressors in human cancers and regulates quiescence of stem cells and cancer cells. The sole PTEN ortholog in Caenorhabditis elegans is daf-18. In a C. el...

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Main Authors: Amanda L Fry, Amy K Webster, Julia Burnett, Rojin Chitrakar, L Ryan Baugh, E Jane Albert Hubbard
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-07-01
Series:PLoS Genetics
Online Access:https://doi.org/10.1371/journal.pgen.1009650
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spelling doaj-f571a0900f9e4f4899f901ce5b1ca2e12021-08-04T04:31:23ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042021-07-01177e100965010.1371/journal.pgen.1009650DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence.Amanda L FryAmy K WebsterJulia BurnettRojin ChitrakarL Ryan BaughE Jane Albert HubbardQuiescence, an actively-maintained reversible state of cell cycle arrest, is not well understood. PTEN is one of the most frequently lost tumor suppressors in human cancers and regulates quiescence of stem cells and cancer cells. The sole PTEN ortholog in Caenorhabditis elegans is daf-18. In a C. elegans loss-of-function mutant for daf-18, primordial germ cells (PGCs) divide inappropriately in L1 larvae hatched into starvation conditions, in a TOR-dependent manner. Here, we further investigated the role of daf-18 in maintaining PGC quiescence in L1 starvation. We found that maternal or zygotic daf-18 is sufficient to maintain cell cycle quiescence, that daf-18 acts in the germ line and soma, and that daf-18 affects timing of PGC divisions in fed animals. Importantly, our results also implicate daf-18 in repression of germline zygotic gene activation, though not in germline fate specification. However, TOR is less important to germline zygotic gene expression, suggesting that in the absence of food, daf-18/PTEN prevents inappropriate germline zygotic gene activation and cell division by distinct mechanisms.https://doi.org/10.1371/journal.pgen.1009650
collection DOAJ
language English
format Article
sources DOAJ
author Amanda L Fry
Amy K Webster
Julia Burnett
Rojin Chitrakar
L Ryan Baugh
E Jane Albert Hubbard
spellingShingle Amanda L Fry
Amy K Webster
Julia Burnett
Rojin Chitrakar
L Ryan Baugh
E Jane Albert Hubbard
DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence.
PLoS Genetics
author_facet Amanda L Fry
Amy K Webster
Julia Burnett
Rojin Chitrakar
L Ryan Baugh
E Jane Albert Hubbard
author_sort Amanda L Fry
title DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence.
title_short DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence.
title_full DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence.
title_fullStr DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence.
title_full_unstemmed DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence.
title_sort daf-18/pten inhibits germline zygotic gene activation during primordial germ cell quiescence.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2021-07-01
description Quiescence, an actively-maintained reversible state of cell cycle arrest, is not well understood. PTEN is one of the most frequently lost tumor suppressors in human cancers and regulates quiescence of stem cells and cancer cells. The sole PTEN ortholog in Caenorhabditis elegans is daf-18. In a C. elegans loss-of-function mutant for daf-18, primordial germ cells (PGCs) divide inappropriately in L1 larvae hatched into starvation conditions, in a TOR-dependent manner. Here, we further investigated the role of daf-18 in maintaining PGC quiescence in L1 starvation. We found that maternal or zygotic daf-18 is sufficient to maintain cell cycle quiescence, that daf-18 acts in the germ line and soma, and that daf-18 affects timing of PGC divisions in fed animals. Importantly, our results also implicate daf-18 in repression of germline zygotic gene activation, though not in germline fate specification. However, TOR is less important to germline zygotic gene expression, suggesting that in the absence of food, daf-18/PTEN prevents inappropriate germline zygotic gene activation and cell division by distinct mechanisms.
url https://doi.org/10.1371/journal.pgen.1009650
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