门控
变构调节
兴奋剂
频道(广播)
化学
BK通道
计算机科学
生物物理学
受体
电信
生物
生物化学
膜电位
作者
Naileth González-Sanabria,Gustavo F. Contreras,Maximiliano Rojas,Yorley Duarte,Fernando D. González‐Nilo,Eduardo Perozo,Ramón Latorre
标识
DOI:10.1101/2025.03.27.645783
摘要
Abstract BK channels play essential roles in a wealth of physiological functions, including regulating smooth muscle tone and neurotransmitter release. Its dysfunction, often caused by loss-of-function mutations, can lead to severe phenotypes, including ataxia and sensory impairment. Despite the therapeutic potential of BK channel agonists, the molecular mechanisms by which they stabilize the pore’s open conformation remain unclear. Using cryo-electron microscopy and molecular dynamic simulations, we identified that NS1619, a synthetic benzimidazolone agonist, first described as a BK opener, binds within a pocket formed by the S6/RCK1 linker and the S4 transmembrane segment. Agonist binding drives a twisting motion in the S6 segment, enabling critical interactions with residues K330, K331, and F223. Our findings clarify the mechanism of NS1619 and suggest that its binding site can accommodate other agonists, highlighting a promising target for therapeutic development. Teaser BK channel activation by NS1619 reveals key binding interactions, offering insights for designing targeted therapeutic agents.
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