Structural basis of pore formation by the bacterial toxin pneumolysin

被引:340
|
作者
Tilley, SJ
Orlova, EV
Gilbert, RJC
Andrew, PW
Saibil, HR
机构
[1] Univ London Birkbeck Coll, Sch Crystallog, London WC1E 7HX, England
[2] Univ London Birkbeck Coll, Inst Struct Mol Biol, London WC1E 7HX, England
[3] Univ Oxford, Div Struct Biol, Wellcome Trust Ctr Human Genet, Oxford OX3 7BN, England
[4] Univ Oxford, Ctr Mol Sci, Cent Chem Lab, Oxford OX1 3QU, England
[5] Univ Leicester, Dept Infect Immun & Inflammat, Leicester LE1 9HN, Leics, England
基金
英国生物技术与生命科学研究理事会;
关键词
D O I
10.1016/j.cell.2005.02.033
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
The bacterial toxin pneumolysin is released as a soluble monomer that kills target cells by assembling into large oligomeric rings and forming pores in cholesterol-containing membranes. Using cryo-EM and image processing, we have determined the structures of membrane-surface bound (prepore) and inserted-pore oligomer forms, providing a direct observation of the conformational transition into the pore form of a cholesterol-dependent cytolysin. In the pore structure, the domains of the monomer separate and double over into an arch, forming a wall sealing the bilayer around the pore. This transformation is accomplished by substantial refolding of two of the four protein domains along with deformation of the membrane. Extension of protein density into the bilayer supports earlier predictions that the protein inserts beta hairpins into the membrane. With an oligomer size of up to 44 subunits in the pore, this assembly creates a transmembrane channel 260 angstrom in diameter lined by 176 beta strands.
引用
收藏
页码:247 / 256
页数:10
相关论文
共 50 条
  • [31] Structural determinants for membrane insertion, pore formation and translocation of Clostridium difficile toxin B
    Genisyuerek, Selda
    Papatheodorou, Panagiotis
    Guttenberg, Gregor
    Schubert, Rolf
    Benz, Roland
    Aktories, Klaus
    [J]. MOLECULAR MICROBIOLOGY, 2011, 79 (06) : 1643 - 1654
  • [32] Cholesterol supplementation protects hepatocytes against the cholesterol-dependent pore-forming toxin pneumolysin
    Kammann, T.
    Hoff, J.
    Graeler, M.
    Bae, H.
    Meyer, T.
    Popp, J.
    Press, A. T.
    Bauer, M.
    [J]. INFECTION, 2019, 47 : S10 - S11
  • [33] Structural basis of nonhaemolytic nature of pneumolysin from strain ST-306
    Badgujar, Dilip
    Anil, Anjali
    More, Prachi
    Sarkar, Shruti
    Banerjee, Rinti
    Banerjee, Anirban
    Bhaumik, Prasenjit
    [J]. ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2017, 73 : C636 - C636
  • [34] Structural basis for receptor recognition and pore formation of a zebrafish aerolysin-like protein
    Jia, Ning
    Liu, Nan
    Cheng, Wang
    Jiang, Yong-Liang
    Sun, Hui
    Chen, Lan-Lan
    Peng, Junhui
    Zhang, Yonghui
    Ding, Yue-He
    Zhang, Zhi-Hui
    Wang, Xuejuan
    Cai, Gang
    Wang, Junfeng
    Dong, Meng-Qiu
    Zhang, Zhiyong
    Wu, Hui
    Wang, Hong-Wei
    Chen, Yuxing
    Zhou, Cong-Zhao
    [J]. EMBO REPORTS, 2016, 17 (02) : 235 - 248
  • [35] Structural basis for the role of lipid domain in promoting membrane pore formation of basic polypeptides
    Wu, PL
    Huang, WN
    Wu, WG
    [J]. BIOPHYSICAL JOURNAL, 2005, 88 (01) : 370A - 370A
  • [36] Structural Basis of Pore Formation in the Mannose Phosphotransferase System by Pediocin PA-1
    Zhu, Liyan
    Zeng, Jianwei
    Wang, Chang
    Wang, Jiawei
    [J]. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2022, 88 (03)
  • [37] Magnesium therapy improves outcome in Streptococcus pneumoniae meningitis by altering pneumolysin pore formation
    Hupp, Sabrina
    Ribes, Sandra
    Seele, Jana
    Bischoff, Carolin
    Foertsch, Christina
    Maier, Elke
    Benz, Roland
    Mitchell, Timothy J.
    Nau, Roland
    Iliev, Asparouh I.
    [J]. BRITISH JOURNAL OF PHARMACOLOGY, 2017, 174 (23) : 4295 - 4307
  • [38] The mechanism of pore formation by bacterial toxins
    Tilley, SJ
    Saibil, HR
    [J]. CURRENT OPINION IN STRUCTURAL BIOLOGY, 2006, 16 (02) : 230 - 236
  • [39] Structural Snapshots of the α-helical Pore-forming Toxin FraC Reveal The Molecular Basis Of Its Activation In Membranes
    Tanaka, Koji
    Caaveiro, Jose M.
    Tsumoto, Kouhei
    [J]. PROTEIN SCIENCE, 2014, 23 : 230 - 231
  • [40] Structural Basis for Recognition of the Pore-Forming Toxin Intermedilysin by Human Complement Receptor CD59
    Johnson, Steven
    Brooks, Nicholas J.
    Smith, Richard A. G.
    Lea, Susan M.
    Bubeck, Doryen
    [J]. CELL REPORTS, 2013, 3 (05): : 1369 - 1377