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Developmental and Cell Cycle Quiescence Is Mediated by the Nuclear Hormone Receptor Coregulator DIN-1S in the Caenorhabditis Elegans Dauer Larva

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Journal Genetics
Specialty Genetics
Date 2016 Jun 5
PMID 27260305
Citations 6
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Abstract

When faced with suboptimal growth conditions, Caenorhabditis elegans larvae can enter a diapause-like stage called "dauer" that is specialized for dispersal and survival. The decision to form a dauer larva is controlled by three parallel signaling pathways, whereby a compromise of TGFβ, cyclic guanosine monophosphate, or insulin/IGF-like signaling (ILS) results in dauer formation. Signals from these pathways converge on DAF-12, a nuclear hormone receptor that triggers the changes required to initiate dauer formation. DAF-12 is related to the vitamin D, liver-X, and androstane receptors, and like these human receptors, it responds to lipophilic hormone ligands. When bound to its ligand, DAF-12 acquires transcriptional activity that directs reproductive development, while unliganded DAF-12 forms a dauer-specifying complex with its interacting protein DIN-1S to regulate the transcription of genes required for dauer development. We report here that din-1S is required in parallel to par-4/LKB1 signaling within the gonad to establish cell cycle quiescence during the onset of the dauer stage. We show that din-1S is important for postdauer reproduction when ILS is impaired and is necessary for long-term dauer survival in response to reduced ILS. Our work uncovers several previously uncharacterized functions of DIN-1S in executing and maintaining many of the cellular and physiological processes required for appropriate dauer arrest, while also shedding light on the coordination of nuclear hormone signaling, the LKB1/AMPK signaling cascade, and ILS/TGFβ in the control of cell cycle quiescence and tissue growth: a key feature that is often misregulated in a number of hormone-dependent cancers.

Citing Articles

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References
1.
Ren P, Lim C, Johnsen R, Albert P, Pilgrim D, Riddle D . Control of C. elegans larval development by neuronal expression of a TGF-beta homolog. Science. 1996; 274(5291):1389-91. DOI: 10.1126/science.274.5291.1389. View

2.
Cunningham K, Bouagnon A, Barros A, Lin L, Malard L, Romano-Silva M . Loss of a neural AMP-activated kinase mimics the effects of elevated serotonin on fat, movement, and hormonal secretions. PLoS Genet. 2014; 10(6):e1004394. PMC: 4055570. DOI: 10.1371/journal.pgen.1004394. View

3.
Inoue T, Thomas J . Targets of TGF-beta signaling in Caenorhabditis elegans dauer formation. Dev Biol. 2000; 217(1):192-204. DOI: 10.1006/dbio.1999.9545. View

4.
Herrmann J, Byekova Y, Elmets C, Athar M . Liver kinase B1 (LKB1) in the pathogenesis of epithelial cancers. Cancer Lett. 2011; 306(1):1-9. PMC: 3085567. DOI: 10.1016/j.canlet.2011.01.014. View

5.
Kumsta C, Hansen M . C. elegans rrf-1 mutations maintain RNAi efficiency in the soma in addition to the germline. PLoS One. 2012; 7(5):e35428. PMC: 3344830. DOI: 10.1371/journal.pone.0035428. View