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The human transient receptor potential vanilloid 3 channel is sensitized via the ERK pathway
L. Vyklicka, S. Boukalova, L. Macikova, S. Chvojka, V. Vlachova,
Language English Country United States
Document type Journal Article, Research Support, Non-U.S. Gov't
NLK
Free Medical Journals
from 2008 to 1 year ago
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- MeSH
- Epidermal Growth Factor metabolism MeSH
- ErbB Receptors agonists metabolism MeSH
- Phosphorylation drug effects MeSH
- HEK293 Cells MeSH
- Protein Interaction Domains and Motifs MeSH
- TRPV Cation Channels agonists chemistry genetics metabolism MeSH
- Keratinocytes drug effects enzymology metabolism MeSH
- Humans MeSH
- MAP Kinase Signaling System * drug effects MeSH
- Patch-Clamp Techniques MeSH
- Mitogen-Activated Protein Kinase 3 chemistry genetics metabolism MeSH
- Membrane Transport Modulators pharmacology MeSH
- Monoterpenes pharmacology MeSH
- Mutation MeSH
- Mutagenesis, Site-Directed MeSH
- Protein Processing, Post-Translational drug effects MeSH
- Recombinant Proteins chemistry metabolism MeSH
- Boron Compounds pharmacology MeSH
- Threonine metabolism MeSH
- Cell Line, Transformed MeSH
- Up-Regulation * drug effects MeSH
- Green Fluorescent Proteins genetics metabolism MeSH
- Check Tag
- Humans MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
The transient receptor potential vanilloid 3 (TRPV3) channel is a Ca2+-permeable thermosensitive ion channel widely expressed in keratinocytes, where together with epidermal growth factor receptor (EGFR) forms a signaling complex regulating epidermal homeostasis. Proper signaling through this complex is achieved and maintained via several pathways in which TRPV3 activation is absolutely required. Results of recent studies have suggested that low-level constitutive activity of TRPV3 induces EGFR-dependent signaling that, in turn, amplifies TRPV3 via activation of the mitogen-activated protein kinase ERK in a positive feedback loop. Here, we explored the molecular mechanism that increases TRPV3 activity through EGFR activation. We used mutagenesis and whole-cell patch clamp experiments on TRPV3 channels endogenously expressed in an immortalized human keratinocyte cell line (HaCaT) and in transiently transfected HEK293T cells and found that the sensitizing effect of EGFR on TRPV3 is mediated by ERK. We observed that ERK-mediated phosphorylation of TRPV3 alters its responsiveness to repeated chemical stimuli. Among several putative ERK phosphorylation sites, we identified threonine 264 in the N-terminal ankyrin repeat domain as the most critical site for the ERK-dependent modulation of TRPV3 channel activity. Of note, Thr264 is in close vicinity to a structurally and functionally important TRPV3 region comprising an atypical finger 3 and oxygen-dependent hydroxylation site. In summary, our findings indicate that Thr264 in TRPV3 is a key ERK phosphorylation site mediating EGFR-induced sensitization of the channel to stimulate signaling pathways involved in regulating skin homeostasis.
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