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Nucleotide levels regulate germline proliferation through modulating GLP-1/Notch signaling in C. elegans.


ABSTRACT: Animals alter their reproductive programs to accommodate changes in nutrient availability, yet the connections between known nutrient-sensing systems and reproductive programs are underexplored, and whether there is a mechanism that senses nucleotide levels to coordinate germline proliferation is unknown. We established a model system in which nucleotide metabolism is perturbed in both the nematode Caenorhabditis elegans (cytidine deaminases) and its food (Escherichia coli); when fed food with a low uridine/thymidine (U/T) level, germline proliferation is arrested. We provide evidence that this impact of U/T level on the germline is critically mediated by GLP-1/Notch and MPK-1/MAPK, known to regulate germline mitotic proliferation. This germline defect is suppressed by hyperactivation of glp-1 or disruption of genes downstream from glp-1 to promote meiosis but not by activation of the IIS or TORC1 pathways. Moreover, GLP-1 expression is post-transcriptionally modulated by U/T levels. Our results reveal a previously unknown nucleotide-sensing mechanism for controlling reproductivity.

SUBMITTER: Chi C 

PROVIDER: S-EPMC4743060 | biostudies-literature | 2016 Feb

REPOSITORIES: biostudies-literature

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Nucleotide levels regulate germline proliferation through modulating GLP-1/Notch signaling in C. elegans.

Chi Congwu C   Ronai Diana D   Than Minh T MT   Walker Cierra J CJ   Sewell Aileen K AK   Han Min M  

Genes & development 20160201 3


Animals alter their reproductive programs to accommodate changes in nutrient availability, yet the connections between known nutrient-sensing systems and reproductive programs are underexplored, and whether there is a mechanism that senses nucleotide levels to coordinate germline proliferation is unknown. We established a model system in which nucleotide metabolism is perturbed in both the nematode Caenorhabditis elegans (cytidine deaminases) and its food (Escherichia coli); when fed food with a  ...[more]

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