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The Tunicate Metabolite 2-(3,5-Diiodo-4-methoxyphenyl)ethan-1-amine Targets Ion Channels of Vertebrate Sensory Neurons

Authors :
Paguigan, Noemi D.
Yan, Yannan
Karthikeyan, Manju
Chase, Kevin
Carter, Jackson
Leavitt, Lee S.
Lim, Albebson L.
Lin, Zhenjian
Memon, Tosifa
Christensen, Sean
Bentzen, Bo H.
Schmitt, Nicole
Reilly, Christopher A.
Teichert, Russell W.
Raghuraman, Shrinivasan
Olivera, Baldomero M.
Schmidt, Eric W.
Paguigan, Noemi D.
Yan, Yannan
Karthikeyan, Manju
Chase, Kevin
Carter, Jackson
Leavitt, Lee S.
Lim, Albebson L.
Lin, Zhenjian
Memon, Tosifa
Christensen, Sean
Bentzen, Bo H.
Schmitt, Nicole
Reilly, Christopher A.
Teichert, Russell W.
Raghuraman, Shrinivasan
Olivera, Baldomero M.
Schmidt, Eric W.
Source :
Paguigan , N D , Yan , Y , Karthikeyan , M , Chase , K , Carter , J , Leavitt , L S , Lim , A L , Lin , Z , Memon , T , Christensen , S , Bentzen , B H , Schmitt , N , Reilly , C A , Teichert , R W , Raghuraman , S , Olivera , B M & Schmidt , E W 2021 , ' The Tunicate Metabolite 2-(3,5-Diiodo-4-methoxyphenyl)ethan-1-amine Targets Ion Channels of Vertebrate Sensory Neurons ' , ACS chemical biology , vol. 16 , no. 9 , pp. 1654-1662 .
Publication Year :
2021

Abstract

Marine tunicates produce defensive amino-acid-derived metabolites, including 2-(3,5-diiodo-4-methoxyphenyl)ethan-1-amine (DIMTA), but their mechanisms of action are rarely known. Using an assay-guided approach, we found that out of the many different sensory cells in the mouse dorsal root ganglion (DRG), DIMTA selectively affected low-threshold cold thermosensors. Whole-cell electrophysiology experiments using DRG cells, channels expressed in Xenopus oocytes, and human cell lines revealed that DIMTA blocks several potassium channels, reducing the magnitude of the afterhyperpolarization and increasing the baseline intracellular calcium concentration [Ca2+]i of low-threshold cold thermosensors. When injected into mice, DIMTA increased the threshold of cold sensation by >3 °C. DIMTA may thus serve as a lead in the further design of compounds that inhibit problems in the cold-sensory system, such as cold allodynia and other neuropathic pain conditions.

Details

Database :
OAIster
Journal :
Paguigan , N D , Yan , Y , Karthikeyan , M , Chase , K , Carter , J , Leavitt , L S , Lim , A L , Lin , Z , Memon , T , Christensen , S , Bentzen , B H , Schmitt , N , Reilly , C A , Teichert , R W , Raghuraman , S , Olivera , B M & Schmidt , E W 2021 , ' The Tunicate Metabolite 2-(3,5-Diiodo-4-methoxyphenyl)ethan-1-amine Targets Ion Channels of Vertebrate Sensory Neurons ' , ACS chemical biology , vol. 16 , no. 9 , pp. 1654-1662 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1296098286
Document Type :
Electronic Resource