Please use this identifier to cite or link to this item: http://hdl.handle.net/123456789/581
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dc.contributor.authorMukhopadhyay, Arnab-
dc.date.accessioned2015-06-03T07:05:53Z-
dc.date.available2015-06-03T07:05:53Z-
dc.date.issued2014-10-
dc.identifier.urihttp://hdl.handle.net/123456789/581-
dc.description.abstractDietary restriction (DR) increases life span and delays the onset of age-related diseases across species. However, the molecular mechanisms have remained relatively unexplored in terms of gene regulation. InC. elegans, a popular model for aging studies, the FOXA transcription factor PHA-4 is a robust genetic regulator of DR, although little is known about how it regulates gene expression. We profiled the transcriptome and miRNAome of an eat-2 mutant, a genetic surrogate of DR, by Next Generation sequencing and find that most of the miRNAs are upregulated in the young-adult worms, none significantly downregulated. Interestingly, PHA-4 can potentially regulate the expression of most of these miRNA genes. Remarkably, many of the PHA-4-regulated genes that are induced during DR are also targets of the PHA-4-upregulated miRNAs, forming a large feed-forward gene regulatory network. The genes targeted by the feed-forward loops (FFLs) are enriched for functions related to ubiquitin-mediated decay, lysosomal autophagy, cellular signalling, protein folding etc., processes that play critical roles in DR and longevity. Together our data provides a framework for understanding the complex and unique regulatory network employed during DR, suggesting that PHA-4 employs such FFLs to fine-tune gene expression and instil robustness in the system during energy crisis.en_US
dc.publisherImpact Journalsen_US
dc.titlePHA‐4/FOXA‐regulated microRNA feed forward loops during Caenorhabditis elegans dietary restrictionen_US
dc.contributor.coauthorAwadhesh Pandit-
dc.contributor.coauthorVaibhav Jain-
dc.contributor.coauthorNeeraj Kumar-
dc.journalAgingen_US
dc.volumeno6en_US
dc.issueno10en_US
dc.pages835-855en_US
Appears in Collections:Molecular Aging, Publications

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