Oriented Reconstitution of the Full-Length KcsA Potassium
Channel in a Lipid Bilayer for AFM Imaging
Version 2 2017-03-23, 17:19Version 2 2017-03-23, 17:19
Version 1 2017-02-01, 20:47Version 1 2017-02-01, 20:47
Posted on 2017-03-23 - 17:19
Here,
we have developed a method of oriented reconstitution of
the KcsA potassium channel amenable to high-resolution AFM imaging.
The solubilized full-length KcsA channels with histidine-tagged (His-tag)
C-terminal ends were attached to a Ni2+-coated mica surface,
and then detergent-destabilized liposomes were added to fill the interchannel
space. AFM revealed that the membrane-embedded KcsA channels were
oriented with their extracellular faces upward, seen as a tetrameric
square shape. This orientation was corroborated by the visible binding
of a peptide scorpion toxin, agitoxin-2. To observe the cytoplasmic
side of the channel, a His-tag was inserted into the extracellular
loop, and the oppositely oriented channels provided wholly different
images. In either orientation, the channels were individually dispersed
at acidic pH, whereas they were self-assembled at neutral pH, indicating
that the oriented channels are allowed to diffuse in the membrane.
This method is readily applicable to membrane proteins in general
for AFM imaging.
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Sumino, Ayumi; Uchihashi, Takayuki; Oiki, Shigetoshi (2017). Oriented Reconstitution of the Full-Length KcsA Potassium
Channel in a Lipid Bilayer for AFM Imaging. ACS Publications. Collection. https://doi.org/10.1021/acs.jpclett.6b03058