Crotonic Acid Blocks the Gloeobacter Ligand-Gated Ion Channel (GLIC) via the Extracellular Domain

被引:5
|
作者
Alqazzaz, Mona A. [1 ]
Price, Kerry L. [1 ]
Lummis, Sarah C. R. [1 ]
机构
[1] Univ Cambridge, Dept Biochem, Cambridge CB2 1QW, England
关键词
BINDING-SITE; GLYCINE RECEPTOR;
D O I
10.1021/acs.biochem.6b00531
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cys-loop receptors play important roles in signal transduction in multicellular organisms, but similar proteins exist in prokaryotes, the best studied of-whit:his the Gloeobacter ligand-gated ion channel (GLIC). GLIC is activated by protons with 50% activation (pH(50)) at pH 5.5, and while a histidine residue in its pore-forming alpha-helix (M2) is known to be involved in gating, there is also evidence of a proton-sensitive region in the extracellular domain. However, this proton-sensitive region does not appear to be located in the region of GLIC equivalent to the agonist binding site in related proteins. Here we explore functional effects of a range of compounds that could bind to this site and show that some GABA analogues, the most potent of which is crotonic acid, inhibit GLIC function. Mutagenesis and docking studies suggest crotonic acid can bind to this region of the protein and, when bound, can. allosterically inhibit GLIC function. These data therefore suggest that there is a transduction pathway from the orthosteric binding site to the pore in GLIC, as exists in related eukaryotic ligand-gated ion channels, and thus provide further evidence that this prokaryotic receptor is a good model for understanding this family of proteins.
引用
收藏
页码:5947 / 5951
页数:5
相关论文
共 50 条
  • [41] Cryo-EM structures of prokaryotic ligand-gated ion channel GLIC provide insights into gating in a lipid environment
    Nikhil Bharambe
    Zhuowen Li
    David Seiferth
    Asha Manikkoth Balakrishna
    Philip C. Biggin
    Sandip Basak
    Nature Communications, 15
  • [42] Ligand-gated ion channel modulation by stimulant derivatives via a vestibular cavity
    Karlsson, Emelia
    Anden, Olivia
    Fan, Chen
    Fourati, Zaineb
    Haouz, Ahmed
    Zhuang, Yuxuan
    Delarue, Marc H.
    Howard, Rebecca J.
    Lindahl, Erik R.
    BIOPHYSICAL JOURNAL, 2024, 123 (03) : 160A - 160A
  • [43] Energetics of Allosteric ion Binding to a Ligand-Gated ion Channel
    Chaudhry, Charu
    Plested, Andrew J. R.
    Schuck, Peter
    Mayer, Mark L.
    BIOPHYSICAL JOURNAL, 2010, 98 (03) : 610A - 610A
  • [44] Allosteric Modulation via Transmembrane Interfaces in a Pentameric Ligand-Gated Ion Channel
    Howard, Rebecca J.
    Zhuang, Yuxuan
    Nakamura, Shinjiro
    Lycksell, Marie
    Kiik, Helen
    Rovsnik, Urska
    Bergh, Cathrine
    Heusser, Stephanie A.
    Orellana, Laura
    Lindahl, Erik
    BIOPHYSICAL JOURNAL, 2019, 116 (03) : 245A - 246A
  • [45] Amphetamine activates/potentiates a ligand-gated ion channel
    Carvelli, Lucia
    CHANNELS, 2014, 8 (04) : 294 - 295
  • [46] Ligand-gated ion-channel target screening
    Ionescu-Zanetti, Cristian
    Genetic Engineering and Biotechnology News, 2010, 30 (01):
  • [47] Ligand-Gated Ion-Channel Target Screening
    Ionescu-Zanetti, Cristian
    GENETIC ENGINEERING & BIOTECHNOLOGY NEWS, 2010, 30 (01): : 26 - 26
  • [48] Technical workshop: Ligand-gated ion channel diversity
    Wisden, W
    EUROPEAN JOURNAL OF NEUROSCIENCE, 2000, 12 : 382 - 382
  • [49] Desensitization Mechanism in Prokaryotic Ligand-gated Ion Channel
    Velisetty, Phanindra
    Chakrapani, Sudha
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (22) : 18467 - 18477
  • [50] Cryo-EM Structure Determination and Model Fitting of the Proton-Gated Ligand-Gated Ion Channel glic at Multiple pH States
    Rovsnik, Urska
    Lim, Victoria
    Blau, Christian
    Howard, Rebecca J.
    Lindahl, Erik
    BIOPHYSICAL JOURNAL, 2020, 118 (03) : 581A - 582A