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June 1, 2000Journal of Biological Chemistry320 citationsOpen Access

TASK-3, a Novel Tandem Pore Domain Acid-sensitive K+Channel

SRSindhu RajanEWErhard WischmeyerGLGong Xin Liu

Structured PICO

P
Population
Guinea pig brain cDNA, human genomic library, HEK293 cells, and Xenopus oocytes
I
Intervention
Cloning and expression of TASK-3; substitution of His-98 by asparagine or tyrosine
O
Outcome
Electrophysiological properties and pH sensitivity of the TASK-3 channelsurrogate

TASK-3 is a novel tandem pore domain acid-sensitive K+ channel whose extracellular pH sensitivity is dependent on the His-98 residue.

Abstract

Tandem pore domain acid-sensitive K(+) channel 3 (TASK-3) is a new member of the tandem pore domain potassium channel family. A cDNA encoding a 365- amino acid polypeptide with four putative transmembrane segments and two pore regions was isolated from guinea pig brain. An orthologous sequence was cloned from a human genomic library. Although TASK-3 is 62% identical to TASK-1, the cytosolic C-terminal sequence is only weakly conserved. Analysis of the gene structure identified an intron within the conserved GYG motif of the first pore region. Reverse transcriptase-polymerase chain reaction analysis showed strong expression in brain but very weak mRNA levels in other tissues. Cell-attached patch-clamp recordings of TASK-3 expressed in HEK293 cells showed that the single channel current-voltage relation was inwardly rectifying, and open probability increased markedly with depolarization. Removal of external divalent cations increased the mean single channel current measured at -100 mV from -2.3 to -5.8 pA. Expression of TASK-3 in Xenopus oocytes revealed an outwardly rectifying K(+) current that was strongly decreased in the presence of lower extracellular pH. Substitution of the histidine residue His-98 by asparagine or tyrosine abolished pH sensitivity. This histidine, which is located at the outer part of the pore adjacent to the selectivity filter, may be an essential component of the extracellular pH sensor.

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Cite This Study

Rajan et al. (2000) studied this question.

synapsesocial.com/papers/6a1d56f6cc9f7df1b7054783https://doi.org/10.1074/jbc.m000030200
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