Structures of the T cell potassium channel Kv1.3 with immunoglobulin modulators

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作者
Purushotham Selvakumar
Ana I. Fernández-Mariño
Nandish Khanra
Changhao He
Alice J. Paquette
Bing Wang
Ruiqi Huang
Vaughn V. Smider
William J. Rice
Kenton J. Swartz
Joel R. Meyerson
机构
[1] Weill Cornell Medical College,Department of Physiology and Biophysics
[2] National Institutes of Health,Molecular Physiology and Biophysics Section, Porter Neuroscience Research Center, National Institute of Neurological Diseases and Stroke
[3] New York University School of Medicine,Cryo
[4] Applied Biomedical Science Institute,Electron Microscopy Core
[5] Minotaur Therapeutics,Department of Molecular Medicine
[6] The Scripps Research Institute,Department of Cell Biology
[7] New York University School of Medicine,undefined
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Nature Communications | / 13卷
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摘要
The Kv1.3 potassium channel is expressed abundantly on activated T cells and mediates the cellular immune response. This role has made the channel a target for therapeutic immunomodulation to block its activity and suppress T cell activation. Here, we report structures of human Kv1.3 alone, with a nanobody inhibitor, and with an antibody-toxin fusion blocker. Rather than block the channel directly, four copies of the nanobody bind the tetramer’s voltage sensing domains and the pore domain to induce an inactive pore conformation. In contrast, the antibody-toxin fusion docks its toxin domain at the extracellular mouth of the channel to insert a critical lysine into the pore. The lysine stabilizes an active conformation of the pore yet blocks ion permeation. This study visualizes Kv1.3 pore dynamics, defines two distinct mechanisms to suppress Kv1.3 channel activity with exogenous inhibitors, and provides a framework to aid development of emerging T cell immunotherapies.
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