Feedback between a retinoid-related nuclear receptor and the let-7 microRNAs controls the pace and number of molting cycles in C. elegans.
Patel, R.; Galagali, H.; Kim, J. K.; Frand, A. R.
Show abstract
Animal development requires coordination among cyclic processes, sequential cell fate specifications, and once-a-lifetime morphogenic events, but the underlying mechanisms are not well understood. C. elegans undergo four molts at regular 8-10 h intervals. The pace of the cycle is governed by PERIOD/lin-42 and other as-yet unknown factors. Cessation of the cycle in young adults is controlled by the let-7 family of microRNAs and downstream transcription factors in the heterochronic pathway. Here, we characterize a negative feedback loop between NHR-23, the worm homolog of mammalian retinoid-related orphan receptors (RORs), and the let-7 family of microRNAs that regulates both the frequency and finite number of molts. The molting cycle is decelerated in nhr-23 knockdowns, accelerated in let-7(-) mutants, and similar to wild type animals in let-7(-) nhr-23(-) double mutants. NHR-23 binds response elements (ROREs) in the let-7 promoter and activates transcription. In turn, let-7 dampens nhr-23 expression across development via a complementary let-7 binding site (LCS) in the nhr-23 3' UTR. The molecular interactions between NHR-23 and let-7 hold true for other let-7 family microRNAs. Either derepression of nhr-23 transcripts by LCS deletion or high gene dosage of nhr-23 leads to protracted behavioral quiescence and extra molts in adults. NHR-23 and let-7 also co-regulate scores of genes required for execution of the molts, including lin-42. In addition, ROREs and LCSs isolated from mammalian ROR and let-7 genes function in C. elegans, suggesting conservation of this feedback mechanism. We propose that this feedback loop unites the molting timer and the heterochronic gene regulatory network possibly by functioning as a cycle counter.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Eukaryotic initiation factor EIF-3.G augments mRNA translation efficiency to regulate neuronal activity. 96%
- The enteric nervous system of C. elegans is specified by the Sine Oculis-like homeobox gene ceh-34 96%
- A locomotor neural circuit persists and functions similarly in larvae and adult Drosophila 96%
Similar papers in this journal
- C. elegans establishes germline versus soma by balancing inherited histone methylation 97%
- NHR-23 activity is necessary for C. elegans developmental progression and apical extracellular matrix structure and function 97%
- Pre-dauer starvation rapidly and reversibly reduces niche proliferative signaling to the C. elegans germ line 97%
Similar papers in this journal
Similar papers in this journal
- Alternative somatic and germline gene-regulatory strategies during starvation-induced developmental arrest 97%
- Critical contribution of 3' non-seed base pairing to the in vivo function of the evolutionarily conserved let-7a microRNA 97%
- Simultaneous suppression of ribosome biogenesis and Tor activation by TRIM-NHL proteins promotes terminal differentiation 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.