Multiple system atrophy: α-Synuclein strains at the neuron-oligodendrocyte crossroad

被引:17
|
作者
Reddy, Kreesan [1 ,2 ]
Dieriks, Birger Victor [1 ,2 ]
机构
[1] Univ Auckland, Dept Anat & Med Imaging, Private Bag 92019, Auckland 1142, New Zealand
[2] Univ Auckland, Ctr Brain Res, Private Bag 92019, Auckland 1142, New Zealand
关键词
Multiple system atrophy; Alpha-synuclein; Synucleinopathy; Protein aggregation; Oligodendroglial proteinopathy; Glial cytoplasmic inclusion; Oligodendrocytes; Strains; PROGRESSIVE SUPRANUCLEAR PALSY; GLIAL CYTOPLASMIC INCLUSIONS; MESSENGER-RNA EXPRESSION; PARKINSONS-DISEASE; OLIVOPONTOCEREBELLAR ATROPHY; NATURAL-HISTORY; CELL; ACCUMULATION; DIAGNOSIS; FIBRILS;
D O I
10.1186/s13024-022-00579-z
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The aberrant accumulation of alpha-Synuclein within oligodendrocytes is an enigmatic, pathological feature specific to Multiple system atrophy (MSA). Since the characterization of the disease in 1969, decades of research have focused on unravelling the pathogenic processes that lead to the formation of oligodendroglial cytoplasmic inclusions. The discovery of aggregated alpha-Synuclein (alpha-Syn) being the primary constituent of glial cytoplasmic inclusions has spurred several lines of research investigating the relationship between the pathogenic accumulation of the protein and oligodendrocytes. Recent developments have identified the ability of alpha-Syn to form conformationally distinct"strains" with varying behavioral characteristics and toxicities. Such "strains" are potentially disease-specific, providing insight into the enigmatic nature of MSA. This review discusses the evidence for MSA-specific alpha-Syn strains, highlighting the current methods for detecting and characterizing MSA patient-derived alpha-Syn. Given the differing behaviors of a-Syn strains, we explore the seeding and spreading capabilities of MSA-specific strains, postulating their influence on the aggressive nature of the disease. These ideas culminate into one key question: What causes MSA-specific strain formation? To answer this, we discuss the interplay between oligodendrocytes, neurons and alpha-Syn, exploring the ability of each cell type to contribute to the aggregate formation while postulating the effect of additional variables such as protein interactions, host characteristics and environmental factors. Thus, we propose the idea that MSA strain formation results from the intricate interrelation between neurons and oligodendrocytes, with deficits in each cell type required to initiate alpha-Syn aggregation and MSA pathogenesis.
引用
收藏
页数:18
相关论文
共 50 条
  • [41] Analysis of colonic alpha-synuclein pathology in multiple system atrophy
    Pouclet, Helene
    Lebouvier, Thibaud
    Coron, Emmanuel
    Rouaud, Tiphaine
    Flamant, Mathurin
    Toulgoat, Frederique
    Roy, Monica
    Vavasseur, Fabienne
    des Varannes, Stanislas Bruley
    Neunlist, Michel
    Derkinderen, Pascal
    PARKINSONISM & RELATED DISORDERS, 2012, 18 (07) : 893 - 895
  • [42] Evidence for α-synuclein prions causing multiple system atrophy in humans with parkinsonism
    Prusiner, Stanley B.
    Woerman, Amanda L.
    Mordes, Daniel A.
    Watts, Joel C.
    Rampersaud, Ryan
    Berry, David B.
    Patel, Smita
    Oehler, Abby
    Lowe, Jennifer K.
    Kravitz, Stephanie N.
    Geschwind, Daniel H.
    Glidden, David V.
    Halliday, Glenda M.
    Middleton, Lefkos T.
    Gentleman, Steve M.
    Grinberg, Lea T.
    Giles, Kurt
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2015, 112 (38) : E5308 - E5317
  • [43] Distinct ultrastructural phenotypes of glial and neuronal alpha-synuclein inclusions in multiple system atrophy
    Boing, Carolin
    Di Fabrizio, Marta
    Burger, Domenic
    Bol, John G. J. M.
    Huisman, Evelien
    Rozemuller, Annemieke J. M.
    van de Berg, Wilma D. J.
    Stahlberg, Henning
    Lewis, Amanda J.
    BRAIN, 2024, 147 (11) : 3727 - 3741
  • [44] Heterogeneity of Multiple System Atrophy: An Update
    Jellinger, Kurt A.
    BIOMEDICINES, 2022, 10 (03)
  • [45] Structures of α-synuclein filaments from multiple system atrophy
    Schweighauser, Manuel
    Shi, Yang
    Tarutani, Airi
    Kametani, Fuyuki
    Murzin, Alexey G.
    Ghetti, Bernardino
    Matsubara, Tomoyasu
    Tomita, Taisuke
    Ando, Takashi
    Hasegawa, Kazuko
    Murayama, Shigeo
    Yoshida, Mari
    Hasegawa, Masato
    Scheres, Sjors H. W.
    Goedert, Michel
    NATURE, 2020, 585 (7825) : 464 - +
  • [46] Discriminating α-synuclein strains in Parkinson's disease and multiple system atrophy
    Shahnawaz, Mohammad
    Mukherjee, Abhisek
    Pritzkow, Sandra
    Mendez, Nicolas
    Rabadia, Prakruti
    Liu, Xiangan
    Hu, Bo
    Schmeichel, Ann
    Singer, Wolfgang
    Wu, Gang
    Tsai, Ah-Lim
    Shirani, Hamid
    Nilsson, K. Peter R.
    Low, Phillip A.
    Soto, Claudio
    NATURE, 2020, 578 (7794) : 273 - +
  • [47] Microtubule Depolymerization Suppresses α-Synuclein Accumulation in a Mouse Model of Multiple System Atrophy
    Nakayama, Kimiko
    Suzuki, Yasuyo
    Yazawa, Ikuru
    AMERICAN JOURNAL OF PATHOLOGY, 2009, 174 (04): : 1471 - 1480
  • [48] Filamentous aggregations of phosphorylated α-synuclein in Schwann cells (Schwann cell cytoplasmic inclusions) in multiple system atrophy
    Nakamura, Keiko
    Mori, Fumiaki
    Kon, Tomoya
    Tanji, Kunikazu
    Miki, Yasuo
    Tomiyama, Masahiko
    Kurotaki, Hidekachi
    Toyoshima, Yasuko
    Kakita, Akiyoshi
    Takahashi, Hitoshi
    Yamada, Masahito
    Wakabayashi, Koichi
    ACTA NEUROPATHOLOGICA COMMUNICATIONS, 2015, 3 : 29
  • [49] Alpha-synuclein seeding shows a wide heterogeneity in multiple system atrophy
    Martinez-Valbuena, Ivan
    Visanji, Naomi P.
    Kim, Ain
    Lau, Heather H. C.
    So, Raphaella W. L.
    Alshimemeri, Sohaila
    Gao, Andrew
    Seidman, Michael A.
    Luquin, Maria R.
    Watts, Joel C.
    Lang, Anthony E.
    Kovacs, Gabor G.
    TRANSLATIONAL NEURODEGENERATION, 2022, 11 (01)
  • [50] Phosphorylated α-synuclein in skin nerve fibres differentiates Parkinson's disease from multiple system atrophy
    Zange, Leonora
    Noack, Cornelia
    Hahn, Katrin
    Stenzel, Werner
    Lipp, Axel
    BRAIN, 2015, 138 : 2310 - 2321