Background: The venoms of predators have been an excellent source of diverse highly specific peptides targeting ion channels. Here we describe the first known peptide antagonist of the nociceptor ion channel transient receptor potential ankyrin 1 (TRPA1).\ud \ud Results: We constructed a recombinant cDNA library encoding ∼100 diverse GPI-anchored peptide toxins (t-toxins) derived from spider venoms and screened this library by coexpression in Xenopus oocytes with TRPA1. This screen resulted in identification of protoxin-I (ProTx-I), a 35-residue peptide from the venom of the Peruvian green-velvet tarantula, Thrixopelma pruriens, as the first known high-affinity peptide TRPA1 antagonist. ProTx-I was previously identified as an antagonist of ...
Toxins have evolved to target regions of membrane ion channels that underlie ligand binding, gating,...
Spider venoms are a complex mixture of peptides with a large number of neurotoxins targeting ion cha...
Voltage-gated sodium (Na) channels are essential for the transmission of pain signals in humans maki...
Background: The venoms of predators have been an excellent source of diverse highly specific peptide...
SummaryBackgroundThe venoms of predators have been an excellent source of diverse highly specific pe...
SummaryToxins have evolved to target regions of membrane ion channels that underlie ligand binding, ...
Management of chronic pain presents a major challenge, since many currently available treatments lac...
Spider venoms are a rich source of ion channel modulators with therapeutic potential. Given the anal...
Spider venoms are replete with peptidic ion channel modulators, often with novel subtype selectivity...
TRPA1 is a chemosensory ion channel that functions as a sentinel for structurally diverse electrophi...
Spider venoms are a rich source of ion channel modulators with therapeutic potential. Given the anal...
A selective cell-penetrating scorpion toxin targets the irritant receptor, TRPA1, via a distinct bio...
Bites and stings from venomous creatures can produce pain and inflammation as part of their defensiv...
Spider venoms are replete with peptidic ion channel modulators, often with novel subtype selectivity...
Voltage-gated sodium (NaV) channels are essential for the transmission of pain signals in humans mak...
Toxins have evolved to target regions of membrane ion channels that underlie ligand binding, gating,...
Spider venoms are a complex mixture of peptides with a large number of neurotoxins targeting ion cha...
Voltage-gated sodium (Na) channels are essential for the transmission of pain signals in humans maki...
Background: The venoms of predators have been an excellent source of diverse highly specific peptide...
SummaryBackgroundThe venoms of predators have been an excellent source of diverse highly specific pe...
SummaryToxins have evolved to target regions of membrane ion channels that underlie ligand binding, ...
Management of chronic pain presents a major challenge, since many currently available treatments lac...
Spider venoms are a rich source of ion channel modulators with therapeutic potential. Given the anal...
Spider venoms are replete with peptidic ion channel modulators, often with novel subtype selectivity...
TRPA1 is a chemosensory ion channel that functions as a sentinel for structurally diverse electrophi...
Spider venoms are a rich source of ion channel modulators with therapeutic potential. Given the anal...
A selective cell-penetrating scorpion toxin targets the irritant receptor, TRPA1, via a distinct bio...
Bites and stings from venomous creatures can produce pain and inflammation as part of their defensiv...
Spider venoms are replete with peptidic ion channel modulators, often with novel subtype selectivity...
Voltage-gated sodium (NaV) channels are essential for the transmission of pain signals in humans mak...
Toxins have evolved to target regions of membrane ion channels that underlie ligand binding, gating,...
Spider venoms are a complex mixture of peptides with a large number of neurotoxins targeting ion cha...
Voltage-gated sodium (Na) channels are essential for the transmission of pain signals in humans maki...