Prion protein glycans reduce intracerebral fibril formation and spongiosis in prion disease

被引:29
|
作者
Sevillano, Alejandro M. [1 ,7 ]
Aguilar-Calvo, Patricia [1 ]
Kurt, Timothy D. [1 ,8 ]
Lawrence, Jessica A. [1 ]
Soldau, Katrin [1 ]
Nam, Thu H. [1 ]
Schumann, Taylor [1 ]
Pizzo, Donald P. [1 ]
Nystrom, Sofie [2 ]
Choudhury, Biswa [3 ]
Altmeppen, Hermann [4 ]
Esko, Jeffrey D. [3 ]
Glatzel, Markus [5 ]
Nilsson, K. Peter R. [2 ]
Sigurdson, Christina J. [1 ,5 ,6 ]
机构
[1] UCSD, Dept Pathol, La Jolla, CA USA
[2] Linkoping Univ, Dept Phys Chem & Biol, Linkoping, Sweden
[3] UCSD, Dept Cellular & Mol Med, La Jolla, CA USA
[4] Univ Med Ctr Hamburg Eppendorf, Inst Neuropathol, Hamburg, Germany
[5] USD, Dept Med, La Jolla, CA USA
[6] UCD, Dept Pathol Immunol & Microbiol, Davis, CA USA
[7] Univ Texas MD Anderson Canc Ctr, Dept Clin Canc Prevent, Houston, TX 77030 USA
[8] Fdn Food & Agr Res, Washington, DC USA
来源
JOURNAL OF CLINICAL INVESTIGATION | 2020年 / 130卷 / 03期
基金
美国国家卫生研究院;
关键词
CREUTZFELDT-JAKOB-DISEASE; N-LINKED GLYCANS; ELECTROSPRAY MASS-SPECTROMETRY; HEPARAN-SULFATE PROTEOGLYCANS; SPONGIFORM ENCEPHALOPATHY; AMYLOID PLAQUES; SIALIC-ACID; SCRAPIE; GLYCOSYLATION; PRPSC;
D O I
10.1172/JCI131564
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Posttranslational modifications (PTMs) are common among proteins that aggregate in neurodegenerative disease, yet how PTMs impact the aggregate conformation and disease progression remains unclear. By engineering knockin mice expressing prion protein (PrP) lacking 2 N-linked glycans (Prnp(1)(80Q)(/196Q)), we provide evidence that glycans reduce spongiform degeneration and hinder plaque formation in prion disease.Prnp(1)(80Q)(/196Q )mice challenged with 2 subfibrillar, non-plaque-forming prion strains instead developed plaques highly enriched in ADAM10-cleaved PrP and heparan sulfate (HS). Intriguingly, a third strain composed of intact, glycophosphatidylinositol-anchored (GPI-anchored) PrP was relatively unchanged, forming diffuse, HS-deficient deposits in both the Prnp(1)(80Q/196Q) and WT mice, underscoring the pivotal role of the GPI-anchor in driving the aggregate conformation and disease phenotype. Finally, knockin mice expressing triglycosylated PrP (Prnp(187N)) challenged with a plaque-forming prion strain showed a phenotype reversal, with a striking disease acceleration and switch from plaques to predominantly diffuse, subfibrillar deposits. Our findings suggest that the dominance of subfibrillar aggregates in prion disease is due to the replication of GPI-anchored prions, with fibrillar plaques forming from poorly glycosylated, GPI-anchorless prions that interact with extracellular HS. These studies provide insight into how PTMs impact PrP interactions with polyanionic cofactors, and highlight PTMs as a major force driving the prion disease phenotype.
引用
收藏
页码:1350 / 1362
页数:13
相关论文
共 50 条
  • [1] Modeling a prion protein dimer: Predictions for fibril formation
    Warwicker, J
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2000, 278 (03) : 646 - 652
  • [2] Probing the role of RNA in prion protein and prion fibril recognition
    Paul, Brian W.
    Brockman, Hannah O.
    Soto, Patricia
    BIOPHYSICAL JOURNAL, 2023, 122 (03) : 335A - 336A
  • [3] Structural mechanisms of oligomer and amyloid fibril formation by the prion protein
    Sengupta, Ishita
    Udgaonkar, Jayant B.
    CHEMICAL COMMUNICATIONS, 2018, 54 (49) : 6230 - 6242
  • [4] Prion protein disease and neuropathology of prion disease
    du Plessis, Daniel G.
    NEUROIMAGING CLINICS OF NORTH AMERICA, 2008, 18 (01) : 163 - +
  • [5] Prion protein and prion disease at a glance
    Zhu, Caihong
    Aguzzi, Adriano
    JOURNAL OF CELL SCIENCE, 2021, 134 (17)
  • [6] Aggregation and amyloid fibril formation of the prion protein is accelerated in the presence of glycogen
    Panza, Giannantonio
    Stoehr, Jan
    Birkmann, Eva
    Riesner, Detlev
    Willbold, Dieter
    Baba, Otto
    Terashima, Tatsuo
    Dumpitak, Christian
    REJUVENATION RESEARCH, 2008, 11 (02) : 365 - 369
  • [7] Sialylation of the prion protein glycans controls prion replication rate and glycoform ratio
    Elizaveta Katorcha
    Natallia Makarava
    Regina Savtchenko
    Ilia V. Baskakov
    Scientific Reports, 5
  • [8] Sialylation of the prion protein glycans controls prion replication rate and glycoform ratio
    Katorcha, Elizaveta
    Makarava, Natallia
    Savtchenko, Regina
    Baskakov, Ilia V.
    SCIENTIFIC REPORTS, 2015, 5
  • [9] Human Anti-prion Antibodies Block Prion Peptide Fibril Formation and Neurotoxicity
    Wei, Xing
    Roettger, Yvonne
    Tan, Bailin
    He, Yongzheng
    Dodel, Richard
    Hampel, Harald
    Wei, Gang
    Haney, Jillian
    Gu, Huiying
    Johnstone, Brian H.
    Liu, Junyi
    Farlow, Martin R.
    Du, Yansheng
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (16) : 12858 - 12866
  • [10] Differential effects of divalent cations on elk prion protein fibril formation and stability
    Samorodnitsky, Daniel
    Nicholson, Eric M.
    PRION, 2018, 12 (01) : 63 - 71