Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10755984 | Biochemical and Biophysical Research Communications | 2014 | 7 Pages |
Abstract
Besides classical scorpion toxin-potassium channel binding modes, novel modes remain unknown. Here, we report a novel binding mode of native toxin BmKTX towards Kv1.3 channel. The combined experimental and computational data indicated that BmKTX-D33H analog used the classical anti-parallel β-sheet domain as the channel-interacting interface together with the conserved channel pore-blocking Lys26. However, the wild-type BmKTX was found to use Arg23 rather than Lys26 as the new pore-blocking residue, and mainly adopt the turn motif between the α-helix and antiparallel β-sheet domains to recognize Kv1.3 channel. Together, these findings not only reveal that scorpion toxin-potassium channel interaction modes are more diverse than thought, but also highlight the functional role of toxin acidic residues in mediating diverse toxin-potassium channel binding modes.
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Authors
Zongyun Chen, Youtian Hu, Jun Hu, Weishan Yang, Jean-Marc Sabatier, Michel De Waard, Zhijian Cao, Wenxin Li, Song Han, Yingliang Wu,