Heat and AITC activate green anole TRPA1 in a membrane-delimited manner.
about
Species-specific temperature sensitivity of TRPA1Molecular mechanisms of temperature adaptationMolecular basis determining inhibition/activation of nociceptive receptor TRPA1 protein: a single amino acid dictates species-specific actions of the most potent mammalian TRPA1 antagonist.Evolutionary tuning of TRPA1 and TRPV1 thermal and chemical sensitivity in vertebrates.Propofol-induced pain sensation involves multiple mechanisms in sensory neurons.Requirement of extracellular Ca2+ binding to specific amino acids for heat-evoked activation of TRPA1.TRPs et al.: a molecular toolkit for thermosensory adaptations.Dependence of heat-evoked TRPA1 activation on extracellular Ca2.
P2860
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P2860
Heat and AITC activate green anole TRPA1 in a membrane-delimited manner.
description
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name
Heat and AITC activate green anole TRPA1 in a membrane-delimited manner.
@en
Heat and AITC activate green anole TRPA1 in a membrane-delimited manner.
@nl
type
label
Heat and AITC activate green anole TRPA1 in a membrane-delimited manner.
@en
Heat and AITC activate green anole TRPA1 in a membrane-delimited manner.
@nl
prefLabel
Heat and AITC activate green anole TRPA1 in a membrane-delimited manner.
@en
Heat and AITC activate green anole TRPA1 in a membrane-delimited manner.
@nl
P2093
P2860
P1433
P1476
Heat and AITC activate green anole TRPA1 in a membrane-delimited manner.
@en
P2093
Erkin Kurganov
Makoto Tominaga
Shigeru Saito
Yiming Zhou
P2860
P2888
P304
P356
10.1007/S00424-013-1420-Z
P577
2014-01-03T00:00:00Z