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February 22, 1991Science387 citations

Exchange of Conduction Pathways Between Two Related K + Channels

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HHHali A. HartmannGKGlenn E. KirschJDJohn Drewe

Structured PICO

P
Population
Voltage-gated potassium channels (NGK2 and DRK1)
I
Intervention
Transplantation of a 21-amino acid segment of the S5-S6 linker from the voltage-activated potassium channel NGK2 to DRK1
C
Comparator
Wild-type channels
O
Outcome
Single channel conductance and blockade by external and internal tetraethylammonium (TEA) ionsurrogate

The 21-amino acid segment of the S5-S6 linker controls the essential biophysical properties of the pore and may form the conduction pathway of potassium channels.

Abstract

The structure of the ion conduction pathway or pore of voltage-gated ion channels is unknown, although the linker between the membrane spanning segments S5 and S6 has been suggested to form part of the pore in potassium channels. To test whether this region controls potassium channel conduction, a 21-amino acid segment of the S5-S6 linker was transplanted from the voltage-activated potassium channel NGK2 to another potassium channel DRK1, which has very different pore properties. In the resulting chimeric channel, the single channel conductance and blockade by external and internal tetraethylammonium (TEA) ion were characteristic of the donor NGK2 channel. Thus, this 21-amino acid segment controls the essential biophysical properties of the pore and may form the conduction pathway of these potassium channels.

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Cite This Study

Hartmann et al. (1991) studied this question.

synapsesocial.com/papers/6a19db114b45427442ead123https://doi.org/10.1126/science.2000495
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