Protein kinase C phosphorylation sensitizes but does not activate the capsaicin receptor transient receptor potential vanilloid 1 (TRPV1). 2003

Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
Division of Neuroscience, Baylor College of Medicine, Houston, TX 77030, USA.

Protein kinase C (PKC) modulates the function of the capsaicin receptor transient receptor potential vanilloid 1 (TRPV1). This modulation manifests as increased current when the channel is activated by capsaicin. In addition, studies have suggested that phosphorylation by PKC might directly gate the channel, because PKC-activating phorbol esters induce TRPV1 currents in the absence of applied ligands. To test whether PKC both modulates and gates the TRPV1 function by direct phosphorylation, we used direct sequencing to determine the major sites of PKC phosphorylation on TRPV1 intracellular domains. We then tested the ability of the PKC-activating phorbol 12-myristate 13-acetate (PMA) to potentiate capsaicin-induced currents and to directly gate TRPV1. We found that mutation of S800 to alanine significantly reduced the PMA-induced enhancement of capsaicin-evoked currents and the direct activation of TRPV1 by PMA. Mutation of S502 to alanine reduced PMA enhancement of capsaicin-evoked currents, but had no effect on direct activation of TRPV1 by PMA. Conversely, mutation of T704 to alanine had no effect on PMA enhancement of capsaicin-evoked currents but dramatically reduced direct activation of TRPV1 by PMA. These results, combined with pharmacological studies showing that inactive phorbol esters also weakly activate TRPV1, suggest that PKC-mediated phosphorylation modulates TRPV1 but does not directly gate the channel. Rather, currents induced by phorbol esters result from the combination of a weak direct ligand-like activation of TRPV1 and the phosphorylation-induced enhancement of the TRPV1 function. Furthermore, modulation of the TRPV1 function by PKC appears to involve distinct phosphorylation sites depending on the mechanism of channel activation.

UI MeSH Term Description Entries
D007700 Kinetics The rate dynamics in chemical or physical systems.
D010766 Phosphorylation The introduction of a phosphoryl group into a compound through the formation of an ester bond between the compound and a phosphorus moiety. Phosphorylations
D011493 Protein Kinase C An serine-threonine protein kinase that requires the presence of physiological concentrations of CALCIUM and membrane PHOSPHOLIPIDS. The additional presence of DIACYLGLYCEROLS markedly increases its sensitivity to both calcium and phospholipids. The sensitivity of the enzyme can also be increased by PHORBOL ESTERS and it is believed that protein kinase C is the receptor protein of tumor-promoting phorbol esters. Calcium Phospholipid-Dependent Protein Kinase,Calcium-Activated Phospholipid-Dependent Kinase,PKC Serine-Threonine Kinase,Phospholipid-Sensitive Calcium-Dependent Protein Kinase,Protein Kinase M,Calcium Activated Phospholipid Dependent Kinase,Calcium Phospholipid Dependent Protein Kinase,PKC Serine Threonine Kinase,Phospholipid Sensitive Calcium Dependent Protein Kinase,Phospholipid-Dependent Kinase, Calcium-Activated,Serine-Threonine Kinase, PKC
D011955 Receptors, Drug Proteins that bind specific drugs with high affinity and trigger intracellular changes influencing the behavior of cells. Drug receptors are generally thought to be receptors for some endogenous substance not otherwise specified. Drug Receptors,Drug Receptor,Receptor, Drug
D011993 Recombinant Fusion Proteins Recombinant proteins produced by the GENETIC TRANSLATION of fused genes formed by the combination of NUCLEIC ACID REGULATORY SEQUENCES of one or more genes with the protein coding sequences of one or more genes. Fusion Proteins, Recombinant,Recombinant Chimeric Protein,Recombinant Fusion Protein,Recombinant Hybrid Protein,Chimeric Proteins, Recombinant,Hybrid Proteins, Recombinant,Recombinant Chimeric Proteins,Recombinant Hybrid Proteins,Chimeric Protein, Recombinant,Fusion Protein, Recombinant,Hybrid Protein, Recombinant,Protein, Recombinant Chimeric,Protein, Recombinant Fusion,Protein, Recombinant Hybrid,Proteins, Recombinant Chimeric,Proteins, Recombinant Fusion,Proteins, Recombinant Hybrid
D004789 Enzyme Activation Conversion of an inactive form of an enzyme to one possessing metabolic activity. It includes 1, activation by ions (activators); 2, activation by cofactors (coenzymes); and 3, conversion of an enzyme precursor (proenzyme or zymogen) to an active enzyme. Activation, Enzyme,Activations, Enzyme,Enzyme Activations
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013755 Tetradecanoylphorbol Acetate A phorbol ester found in CROTON OIL with very effective tumor promoting activity. It stimulates the synthesis of both DNA and RNA. Phorbol Myristate Acetate,12-Myristoyl-13-acetylphorbol,12-O-Tetradecanoyl Phorbol 13-Acetate,Tetradecanoylphorbol Acetate, 4a alpha-Isomer,12 Myristoyl 13 acetylphorbol,12 O Tetradecanoyl Phorbol 13 Acetate,13-Acetate, 12-O-Tetradecanoyl Phorbol,Acetate, Phorbol Myristate,Acetate, Tetradecanoylphorbol,Myristate Acetate, Phorbol,Phorbol 13-Acetate, 12-O-Tetradecanoyl,Tetradecanoylphorbol Acetate, 4a alpha Isomer
D014162 Transfection The uptake of naked or purified DNA by CELLS, usually meaning the process as it occurs in eukaryotic cells. It is analogous to bacterial transformation (TRANSFORMATION, BACTERIAL) and both are routinely employed in GENE TRANSFER TECHNIQUES. Transfections
D015640 Ion Channel Gating The opening and closing of ion channels due to a stimulus. The stimulus can be a change in membrane potential (voltage-gated), drugs or chemical transmitters (ligand-gated), or a mechanical deformation. Gating is thought to involve conformational changes of the ion channel which alters selective permeability. Gating, Ion Channel,Gatings, Ion Channel,Ion Channel Gatings

Related Publications

Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
March 2023, Journal of oral biosciences,
Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
July 2011, European journal of pharmacology,
Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
May 2004, The Journal of neuroscience : the official journal of the Society for Neuroscience,
Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
June 2015, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society,
Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
March 2013, Acta physiologica (Oxford, England),
Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
July 2023, Medicinal research reviews,
Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
January 2021, European journal of pain (London, England),
Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
September 2005, The Journal of physiology,
Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
August 2004, Pain,
Gautam Bhave, and Hui-Juan Hu, and Kathi S Glauner, and Weiguo Zhu, and Haibin Wang, and D J Brasier, and Gerry S Oxford, and Robert W Gereau
October 2017, Endocrinology,
Copied contents to your clipboard!