A Canal-Associated Neuron cAMP signalling pathway that regulates C. elegans larval development
Chien, J.; Wolf, F. W.; Grosche, S.; Yosef, N.; Garriga, G.; Morck, C.
Show abstract
Caenorhabditis elegans larval development requires the function of the two Canal-Associated Neurons (CANs): killing the CANs by laser microsurgery or disrupting their development by mutating the gene ceh-10 results in early larval arrest. How these cells promote larval development, however, remains a mystery. In screens for mutations that bypass CAN function, we identified the gene kin-29, which encodes a member of the Salt-Inducible Kinase (SIK) family and a component of a conserved pathway that regulates various C. elegans phenotypes. Like kin-29 loss, gain-of-function mutations in genes that may act upstream of kin-29 or growth in cyclic-AMP analogs bypassed ceh-10 larval arrest, suggesting that a conserved adenylyl cyclase/PKA pathway inhibits KIN-29 to promote larval development and that loss of CAN function results in dysregulation of KIN-29 and larval arrest. The adenylyl cyclase ACY-2 mediates CAN-dependent larval development: acy-2 mutant larvae arrested development with a similar phenotype to ceh-10 mutants, and the arrest phenotype was suppressed by mutations in kin-29. ACY-2 is predominantly expressed in the CANs, and we provide evidence that the acy-2 functions in the CANs to promote larval development. By contrast, cell-specific expression experiments suggest that kin-29 acts in both the hypodermis and neurons, but not in the CANs. Based on our findings, we propose that cAMP produced by ACY-2 in the CANs acts in neighboring neurons and hypodermal cells where it activates PKA and inhibits KIN-29 to promote larval development. We discuss how this conserved pathway could be partitioned between two cells.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Caenorhabditis elegans junctophilin has tissue-specific functions and regulates neurotransmission with extended-synaptotagmin 97%
- Neuronal post-developmentally acting SAX-7S/L1CAM can function as cleaved fragments to maintain neuronal architecture in C. elegans 97%
- A role for the Erk MAPK pathway in modulating SAX-7/L1CAM-dependent locomotion in Caenorhabditis elegans 97%
Similar papers in this journal
- A temporal sequence of heterochronic gene activities promotes stage-specific developmental events in C. elegans 96%
- Function of cell adhesion molecules in differentiation of ray sensory neurons in C. elegans. 95%
- A deficiency screen of the X chromosome for Rap1 GTPase dominant interacting genes in Drosophila border cell migration 95%
Similar papers in this journal
- daf-16/FOXO blocks adult cell fate in Caenorhabditis elegans dauer larvae via lin-41/TRIM71 97%
- CASK and FARP localize two classes of post-synaptic ACh receptors thereby promoting cholinergic transmission 96%
- DAF-18/PTEN inhibits germline zygotic gene activation during primordial germ cell quiescence 96%
Similar papers in this journal
- Dynamic expression and localization of the LIN-2/7/10 protein scaffolding complex during C. elegans vulval development 96%
- NHR-23 activity is necessary for C. elegans developmental progression and apical extracellular matrix structure and function 95%
- The histone demethylase KDM5 controls developmental timing in Drosophila by promoting prothoracic gland endocycles. 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.