Cryo-EM analysis of PIP2 regulation in mammalian GIRK channels

被引:2
|
作者
Niu, Yiming [1 ]
Tao, Xiao [1 ]
Touhara, Kouki K. [1 ]
MacKinnon, Roderick [1 ]
机构
[1] Rockefeller Univ, Howard Hughes Med Inst, Lab Mol Neurobiol & Biophys, New York, NY 10065 USA
来源
ELIFE | 2020年 / 9卷
基金
美国国家卫生研究院;
关键词
K+-CHANNEL; INWARD-RECTIFIER; CRYSTAL-STRUCTURE; ANOMALOUS RECTIFICATION; POTASSIUM CHANNELS; G-PROTEINS; ACTIVATION; MEMBRANE; IONS;
D O I
10.7554/elife.60552
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
G-protein-gated inward rectifier potassium (GIRK) channels are regulated by G proteins and PIP2. Here, using cryo-EM single particle analysis we describe the equilibrium ensemble of structures of neuronal GIRK2 as a function of the C8-PIP2 concentration. We find that PIP2 shifts the equilibrium between two distinguishable structures of neuronal GIRK (GIRK2), extended and docked, towards the docked form. In the docked form the cytoplasmic domain, to which G(beta gamma) binds, becomes accessible to the cytoplasmic membrane surface where G(beta gamma) resides. Furthermore, PIP2 binding reshapes the G(beta gamma) binding surface on the cytoplasmic domain, preparing it to receive G(beta gamma). We find that cardiac GIRK (GIRK1/4) can also exist in both extended and docked conformations. These findings lead us to conclude that PIP2 influences GIRK channels in a structurally similar manner to Kir2.2 channels. In Kir2.2 channels, the PIP2-induced conformational changes open the pore. In GIRK channels, they prepare the channel for activation by G(beta gamma).
引用
收藏
页数:18
相关论文
共 50 条
  • [42] Engineering of a mammalian VMAT2 for cryo-EM analysis results in non-canonical protein folding
    Lyu, Ying
    Fu, Chunting
    Ma, Haiyun
    Su, Zhaoming
    Sun, Ziyi
    Zhou, Xiaoming
    NATURE COMMUNICATIONS, 2024, 15 (01)
  • [43] Improved mammalian retromer cryo-EM structures reveal a new interface
    Kendall, Amy K.
    Chandra, Mintu
    Xie, Boyang
    Wan, William
    Jackson, Lauren P.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2022, 298 (11)
  • [44] Cryo-EM structure of the 55S mammalian mitochondrial ribosome
    Boehringer, D.
    Greber, B.
    Leibundgut, M.
    Bieri, P.
    Leitner, A.
    Aebersold, R.
    Ban, N.
    EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS, 2015, 44 : S48 - S48
  • [45] Unique features of mammalian mitochondrial translation initiation revealed by cryo-EM
    Eva Kummer
    Marc Leibundgut
    Oliver Rackham
    Richard G. Lee
    Daniel Boehringer
    Aleksandra Filipovska
    Nenad Ban
    Nature, 2018, 560 : 263 - 267
  • [46] Unique features of mammalian mitochondrial translation initiation revealed by cryo-EM
    Kummer, Eva
    Leibundgut, Marc
    Rackham, Oliver
    Lee, Richard G.
    Boehringer, Daniel
    Filipovska, Aleksandra
    Ban, Nenad
    NATURE, 2018, 560 (7717) : 263 - +
  • [47] Structural differences between yeast and mammalian microtubules revealed by cryo-EM
    Howes, Stuart C.
    Geyer, Elisabeth A.
    LaFrance, Benjamin
    Zhang, Rui
    Kellogg, Elizabeth H.
    Westermann, Stefan
    Rice, Luke M.
    Nogales, Eva
    JOURNAL OF CELL BIOLOGY, 2017, 216 (09): : 2669 - 2677
  • [48] Investigation of hydrated channels and proton pathways in a high-resolution cryo-EM structure of mammalian complex I
    Grba, Daniel N.
    Chung, Injae
    Bridges, Hannah R.
    Agip, Ahmed-Noor A.
    Hirst, Judy
    SCIENCE ADVANCES, 2023, 9 (31)
  • [49] Regulation of M(Kv7.2/7.3) channels in neurons by PIP2 and products Of PIP2 hydrolysis:: significance for receptor-mediated inhibition
    Brown, David A.
    Hughes, Simon A.
    Marsh, Stephen J.
    Tinker, Andrew
    JOURNAL OF PHYSIOLOGY-LONDON, 2007, 582 (03): : 917 - 925
  • [50] The unique allosteric regulation of crocodilian hemoglobin revealed by cryo-EM
    Takahashi, K.
    Lee, Y.
    Fago, A.
    Bautista, N. M.
    Storz, J. F.
    Nishizawa, T.
    Tame, J. R. H.
    FEBS OPEN BIO, 2024, 14 : 64 - 64