Chemotactic peptide fMetLeuPhe induces translocation of the TRPV2 channel in macrophages
- 11 December 2006
- journal article
- research article
- Published by Wiley in Journal of Cellular Physiology
- Vol. 210 (3), 692-702
- https://doi.org/10.1002/jcp.20883
Abstract
The present study was conducted to characterize the regulation and function of TRPV2 in macrophages. Among six members of the TRPV family channels, only the expression of TRPV2 was detected in macrophages. We then determined localization of TRPV2 using TtT/M87 macrophages transfected with TRPV2‐EGFP. In serum‐free condition, most of the TRPV2 signal was located in the cytoplasm and colocalized with the endoplasmic reticulum marker. Treatment with serum induced translocation of some of the TRPV2‐EGFP to the plasma membrane. Serum‐induced translocation was blocked by transfection of short‐form TRPV2 (s‐TRPV2) lacking a pore‐forming region and the sixth transmembrane domain. Addition of a chemotactic peptide formyl Met‐Leu‐Phe (fMLP) also induced translocation of TRPV2‐EGFP to the plasma membrane. The fMLP‐induced translocation was blocked by an inhibitor of PI 3‐kinase, LY294002, and pertussis toxin. Whole‐cell patch clamp analysis showed a Cs+ current in the TtT/M87 cell, which was blocked by an addition of ruthenium red and transfection of either s‐TRPV2 or siRNA for TRPV2. fMLP increased the Cs+ current. fMLP induced a rapid and sustained elevation of cytoplasmic Ca2+ ([Ca2+]C), the sustained phase of which was abolished by removal of extracellular calcium. The sustained elevation of [Ca2+]C was also blocked by ruthenium red, and transfection of either s‐TRPV2 or siRNA. Finally, fMLP‐induced migration of macrophage was blocked by ruthenium red or transfection of s‐TRPV2. These results suggest that fMLP induces translocation of TRPV2 from intracellular compartment to the plasma membrane, and this translocation is critical for fMLP‐induced calcium entry. J. Cell. Physiol. 210: 692–702, 2007.Keywords
This publication has 19 references indexed in Scilit:
- An Alternative Splicing Product of the Murine trpv1 Gene Dominant Negatively Modulates the Activity of TRPV1 ChannelsJournal of Biological Chemistry, 2004
- Ca2+-selective Transient Receptor Potential V Channel Architecture and Function Require a Specific Ankyrin RepeatPublished by Elsevier ,2004
- The enigmatic TRPCs: multifunctional cation channelsTrends in Cell Biology, 2004
- TRP channels as cellular sensorsNature, 2003
- A novel mechanism of myocyte degeneration involving the Ca2+-permeable growth factor–regulated channelThe Journal of cell biology, 2003
- Functional expression of the epithelial Ca2+ channels (TRPV5 and TRPV6) requires association of the S100A10-annexin 2 complexThe EMBO Journal, 2003
- Immunohistochemical Localization of Growth Factor-Regulated Channel (GRC) in Human Tissues.Endocrine Journal, 2002
- The trp ion channel familyNature Reviews Neuroscience, 2001
- Synergistic activation of PtdIns 3-kinase by tyrosine-phosphorylated peptide and βγ-subunits of GTP-binding proteinsBiochemical Journal, 1996
- Contrasting of Lowicryl K4M thin sectionsHistochemistry and Cell Biology, 1990