Follicle stimulating hormone signaling opposes the DRL-1/FLR-4 MAP Kinases to balance p38-mediated growth and lipid homeostasis in C. elegans
Torzone, S. K.; Park, A. Y.; Breen, P. C.; Cohen, N. R.; Dowen, R. H.
Show abstract
Animals integrate developmental and nutritional signals before committing crucial resources to growth and reproduction; however, the pathways that perceive and respond to these inputs remain poorly understood. Here, we demonstrate that DRL-1 and FLR-4, which share similarity with mammalian mitogen-activated protein kinases, maintain lipid homeostasis in the C. elegans intestine. DRL-1 and FLR-4 function in a protein complex at the plasma membrane to promote development, as mutations in drl-1 or flr-4 confer slow growth, small body size, and impaired lipid homeostasis. To identify factors that oppose DRL-1/FLR-4, we performed a forward genetic screen for suppressors of the drl-1 mutant phenotypes and identified mutations in flr-2 and fshr-1, which encode the orthologues of follicle stimulating hormone and its putative G protein-coupled receptor, respectively. In the absence of DRL-1/FLR-4, neuronal FLR-2 acts through intestinal FSHR-1 and Protein Kinase A signaling to restrict growth. Furthermore, we show that opposing signaling through DRL-1 and FLR-2 coordinates TIR-1 phase transition, which modulates downstream p38/PMK-1 activity, lipid homeostasis, and development. Finally, we identify a surprising noncanonical role for the developmental transcription factor PHA-4/FOXA in the intestine where it restricts growth in response to impaired DRL-1 signaling. Our work uncovers a complex multi-tissue signaling network that converges on p38 signaling to maintain homeostasis during development.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Pre-dauer starvation rapidly and reversibly reduces niche proliferative signaling to the C. elegans germ line 97%
- C. elegans establishes germline versus soma by balancing inherited histone methylation 96%
- Niche cells regulate primordial germ cell quiescence in response to basement membrane signaling 96%
Similar papers in this journal
- C. elegans methionine/S-adenosylmethionine cycle activity is sensed and adjusted by a nuclear hormone receptor 97%
- Epidermal PAR-6 and PKC-3 are essential for postembryonic development of Caenorhabditis elegans and control non-centrosomal microtubule organization 96%
- Natural variation in the irld gene family affects starvation resistance in C. elegans 96%
Similar papers in this journal
- Neuronal SKN-1B Modulates Nutritional Signalling Pathways and Mitochondrial Networks to Control Satiety 97%
- DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence 97%
- An extracellular protein regulates patched-related/DAF-6-mediated sensory compartment formation in C. elegans 96%
Similar papers in this journal
- The TWK-26/KCNK3 potassium channel and FLR-4 protein kinase coordinate nutrient absorption in the C. elegans intestine 99%
- DREAM Interrupted: Severing LIN-35-MuvB association in Caenorhabditis elegans impairs DREAM function but not its chromatin localization 96%
- A PUF hub drives self-renewal in C. elegans germline stem cells 96%
Similar papers in this journal
- PHA-4/FoxA controls the function of pharyngeal and extrapharyngeal enteric neurons of C. elegans 97%
- An intrinsically disordered region of Drosha selectively promotes miRNA biogenesis, independent of tissue-specific Microprocessor condensates 96%
- Alternative splicing controls pan-neuronal homeobox gene expression 95%
"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.