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Updated: Jun 6, 2026

Spatial and Temporal Analysis of Active ERK in the C. elegans Germline
Published on: November 29, 2016
PKC-1 acts with the ERK MAPK signaling pathway to regulate Caenorhabditis elegans mechanosensory response
R Hyde1, M E Corkins, G A Somers
1Massachusetts General Hospital, Center for Cancer Research, Charlestown, MA, USA.
Abstract:
In most animals, multiple genes encode protein kinase C (PKC) proteins. Pharmacological studies have revealed numerous roles for this protein family, yet the in vivo roles of specific PKC proteins and the functional targets of PKC activation are poorly understood. We find that in Caenorhabditis elegans, two PKC genes, pkc-1 and tpa-1, are required for mechanosensory response; the role of the nPKCε/η ortholog, pkc-1, was examined in detail. pkc-1 function is required for response to nose touch in adult C. elegans and pkc-1 likely acts in the interneurons that regulate locomotion which are direct synaptic targets of mechanosensory neurons. Previous studies have suggested numerous possible targets of pkc-1; our analysis indicates that pkc-1 may act via the extracellular signal-regulated kinase/mitogen-activated protein kinase (ERK/MAPK) pathway. We find that ERK/MAPK pathway function is required for mechanosensory response in C. elegans and that at least one component of this pathway, lin-45 Raf, acts in interneurons of the mechanosensory circuit. Genetic analysis indicates that lin-45 and pkc-1 act together to regulate nose touch response. Thus, these results functionally link two conserved signaling pathways in adult C. elegans neurons and define distinct roles for PKC genes in vivo.
Insights
Two protein kinase C (PKC) genes in C. elegans are crucial for touch sensation. PKC-1 and the ERK/MAPK pathway function together in neurons to control mechanosensory response.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Protein kinase C (PKC) proteins have diverse roles, but their specific in vivo functions and targets remain unclear.
- Understanding specific PKC gene functions is essential for deciphering complex cellular signaling pathways.
Purpose of the Study:
- To investigate the in vivo roles of specific PKC genes in Caenorhabditis elegans.
- To identify functional targets of PKC activation in mechanosensory response.
Main Methods:
- Genetic analysis in C. elegans to study the function of PKC genes pkc-1 and tpa-1.
- Examined the role of the nPKCε/η ortholog, pkc-1, in adult mechanosensory response.
- Investigated the involvement of the ERK/MAPK pathway and lin-45 Raf in mechanosensation.
Main Results:
- pkc-1 and tpa-1 are required for mechanosensory response in C. elegans.
- pkc-1 functions in interneurons that regulate locomotion, receiving input from mechanosensory neurons.
- The extracellular signal-regulated kinase/mitogen-activated protein kinase (ERK/MAPK) pathway is essential for mechanosensory response.
- lin-45 Raf acts in the mechanosensory circuit interneurons.
- pkc-1 and lin-45 genetically interact to regulate nose touch response.
Conclusions:
- PKC genes play distinct in vivo roles in neuronal function.
- Functionally links the PKC and ERK/MAPK signaling pathways in C. elegans neurons.
- Identifies specific neuronal circuits where these pathways interact to mediate mechanosensory response.
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