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De novo designed voltage-gated anion channels suppress neuron firing

Cell. 2025-10; 
Chen Zhou, Huican Li, Jiaxing Wang, Cheng Qian, Hui Xiong, Zhilin Chu, Qiming Shao, Xuan Li, Shijin Sun, Ke Sun, Aiqin Zhu, Jiawei Wang, Xueqin Jin, Fan Yang, Tamer M Gamal El-Din, Bo Li, Jing Huang, Kun Wu, Peilong Lu
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Proteins, Expression, Isolation and Analysis . The mixture was incubated for 1 hour at 4 ◦C. Following another centrifugation step at 25,000 g for 1 hour, the supernatant was collected and loaded onto Ni2+-nitrilotriacetate affinity resin (Ni-NTA; Genescript). Get A Quote

摘要

Design of ion channels responsive to environmental cues has significant implications in modulating cellular activities and sensor development, but it remains a significant challenge due to the complexities involved in designing stimuli-induced conformational changes in proteins. Here, we report the accurate de novo design of voltage-gated anion channels, namely dVGACs. dVGACs adopt a 15-helix pentameric architecture featuring arginine constrictions within the transmembrane span and show voltage-dependent anions currents in patch-clamp experiments. Cryo-electron microscopy (cryo-EM) structures of dVGACs closely align with the design models. Cryo-EM structures and molecular dynamics simulations suggest that the a... More

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