4.7 Article

A binding-block ion selective mechanism revealed by a Na/K selective channel

期刊

PROTEIN & CELL
卷 9, 期 7, 页码 629-639

出版社

SPRINGEROPEN
DOI: 10.1007/s13238-017-0465-8

关键词

cryo-EM; MscS; Na+/K+ selective channel

资金

  1. Ministry of Science and Technology [2016YFA0501100, 2017YFA0504600, 2016YFA0500700, 2013CB910400]
  2. National Fund for Distinguished Young Scholar [31625008]
  3. National Natural Science Foundation of China [21532004, 31570733, 31422016, 31371066, 31671049, 91426302]

向作者/读者索取更多资源

Mechanosensitive (MS) channels are extensively studied membrane protein for maintaining intracellular homeostasis through translocating solutes and ions across the membrane, but its mechanisms of channel gating and ion selectivity are largely unknown. Here, we identified the YnaI channel as the Na+/K+ cation-selective MS channel and solved its structure at 3.8 by cryo-EM single-particle method. YnaI exhibits low conductance among the family of MS channels in E. coli, and shares a similar overall heptamer structure fold with previously studied MscS channels. By combining structural based mutagenesis, quantum mechanical and electrophysiological characterizations, we revealed that ion selective filter formed by seven hydrophobic methionine (YnaI(Met158)) in the transmembrane pore determined ion selectivity, and both ion selectivity and gating of YnaI channel were affected by accompanying anions in solution. Further quantum simulation and functional validation support that the distinct binding energies with various anions to YnaI(Met158) facilitate Na+/K+ pass through, which was defined as binding-block mechanism. Our structural and functional studies provided a new perspective for understanding the mechanism of how MS channels select ions driven by mechanical force.

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