Co-translational protein aggregation after transient cerebral ischemia

被引:68
|
作者
Liu, CL [1 ]
Ge, P [1 ]
Zhang, F [1 ]
Hu, BR [1 ]
机构
[1] Univ Miami, Sch Med, Dept Neurol, Miami, FL 33136 USA
关键词
brain ischemia; protein aggregation; co-translational folding; protein synthesis; ribosomal proteins; CHIP-; HSC70-; Hdj1-HSP40-; eIF-3; eta;
D O I
10.1016/j.neuroscience.2005.05.015
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Transient cerebral ischemia leads to irreversible translational inhibition which has been considered as a hallmark of delayed neuronal death after ischemia. This study utilized a rat transient cerebral ischemia model to investigate whether irreversible translational inhibition is due to abnormal aggregation of translational complex, i.e. the ribosomes and their associated nascent polypeptides, initiation factors, translational chaperones and degradation enzymes after ischemia. Translational complex aggregation was studied by electron microscopy, as well as by biochemical analyses. A duration of 15 or 20 min of cerebral ischemia induced severe translational complex aggregation starting from 30 min of reperfusion and lasting until the onset of delayed neuronal death at 48 h of reperfusion. Under electron microscopy, most rosette-shaped polyribosomes were relatively evenly distributed in the cytoplasm of sham-operated control neurons. After ischemia, most ribosomes were clumped into large abnormal aggregates in neurons destined to die. Translational complex components consisting of small ribosomal subunit protein 6, large subunit protein 28, eukaryotic initiation factor-3 eta, co-translational chaperone heat shock cognate protein 70 and co-chaperone HSP40-Hdj1, as well as co-translational ubiquitin ligase c-terminus of hsp70-interacting protein were all irreversibly clumped into large abnormal protein aggregates after ischemia. Translational components were also highly ubiquitinated. To our knowledge, irreversible aggregation of translational components has not been reported after brain ischemia. This study clearly indicates that ischemia damages co-translational chaperone and degradation machinery, resulting in irreversible destruction of protein synthesis machinery by protein aggregation after ischemia. (c) 2005 IRBO. Published by Elsevier Ltd. All rights reserved.
引用
下载
收藏
页码:1273 / 1284
页数:12
相关论文
共 50 条
  • [1] Protein aggregation after transient cerebral ischemia
    Hu, BR
    Martone, ME
    Jones, YZ
    Liu, CL
    JOURNAL OF NEUROSCIENCE, 2000, 20 (09): : 3191 - 3199
  • [2] Ischemic preconditioning prevents protein aggregation after transient cerebral ischemia
    Liu, C
    Chen, S
    Kamme, F
    Hu, BR
    NEUROSCIENCE, 2005, 134 (01) : 69 - 80
  • [3] Transient ribosomal attenuation coordinates protein synthesis and co-translational folding
    Zhang, Gong
    Hubalewska, Magdalena
    Ignatova, Zoya
    NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2009, 16 (03) : 274 - 280
  • [4] Transient ribosomal attenuation coordinates protein synthesis and co-translational folding
    Gong Zhang
    Magdalena Hubalewska
    Zoya Ignatova
    Nature Structural & Molecular Biology, 2009, 16 : 274 - 280
  • [5] Co-translational assembly of protein complexes
    Fenzl K.
    Kramer G.
    Bukau B.
    BIOspektrum, 2021, 27 (7) : 723 - 726
  • [6] Co-translational protein targeting in bacteria
    Steinberg, Ruth
    Knuepffer, Lara
    Origi, Andrea
    Asti, Rossella
    Koch, Hans-Georg
    FEMS MICROBIOLOGY LETTERS, 2018, 365 (11)
  • [7] Co-translational mechanisms of protein maturation
    Gloge, Felix
    Becker, Annemarie H.
    Kramer, Guenter
    Bukau, Bernd
    CURRENT OPINION IN STRUCTURAL BIOLOGY, 2014, 24 : 24 - 33
  • [8] Dynamics of co-translational protein targeting
    Elvekrog, Margaret M.
    Walter, Peter
    CURRENT OPINION IN CHEMICAL BIOLOGY, 2015, 29 : 79 - 86
  • [9] Co-translational assembly of protein complexes
    Wells, Jonathan N.
    Bergendahl, L. Therese
    Marsh, Joseph A.
    BIOCHEMICAL SOCIETY TRANSACTIONS, 2015, 43 : 1221 - 1226
  • [10] Co-translational protein aggregation and ribosome stalling as a broad-spectrum antibacterial mechanism
    Laleh Khodaparast
    Ladan Khodaparast
    Ramon Duran-Romaña
    Guiqin Wu
    Bert Houben
    Wouter Duverger
    Matthias De Vleeschouwer
    Katerina Konstantoulea
    Fleur Nysen
    Thomas Schalck
    Daniel J. Curwen
    Lisandra L. Martin
    Sebastien Carpentier
    Bernard Scorneaux
    Jan Michiels
    Joost Schymkowitz
    Frederic Rousseau
    Nature Communications, 16 (1)