The Ankyrin Repeats of TRPV1 Bind Multiple Ligands and Modulate Channel Sensitivity

TRPV1 plays a key role in nociception, as it is activated by heat, low pH, and ligands such as capsaicin, leading to a burning pain sensation. We describe the structure of the cytosolic ankyrin repeat domain (ARD) of TRPV1 and identify a multiligand-binding site important in regulating channel sensi...

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Veröffentlicht in:Neuron (Cambridge, Mass.) Mass.), 2007-06, Vol.54 (6), p.905-918
Hauptverfasser: Lishko, Polina V., Procko, Erik, Jin, Xiangshu, Phelps, Christopher B., Gaudet, Rachelle
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Sprache:eng
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Zusammenfassung:TRPV1 plays a key role in nociception, as it is activated by heat, low pH, and ligands such as capsaicin, leading to a burning pain sensation. We describe the structure of the cytosolic ankyrin repeat domain (ARD) of TRPV1 and identify a multiligand-binding site important in regulating channel sensitivity within the TRPV1-ARD. The structure reveals a binding site that accommodates triphosphate nucleotides such as ATP, and biochemical studies demonstrate that calmodulin binds the same site. Electrophysiology experiments show that either ATP or PIP 2 prevent desensitization to repeated applications of capsaicin, i.e., tachyphylaxis, while calmodulin plays an opposing role and is necessary for tachyphylaxis. Mutations in the TRPV1-ARD binding site eliminate tachyphylaxis. We present a model for the calcium-dependent regulation of TRPV1 via competitive interactions of ATP and calmodulin at the TRPV1-ARD-binding site and discuss its relationship to the C-terminal region previously implicated in interactions with PIP 2 and calmodulin.
ISSN:0896-6273
1097-4199
DOI:10.1016/j.neuron.2007.05.027