Molecular crowding and RNA synergize to promote phase separation, microtubule interaction, and seeding of Tau condensates

被引:40
作者
Hochmair, Janine [1 ]
Exner, Christian [2 ]
Franck, Maximilian [1 ]
Dominguez-Baquero, Alvaro [1 ]
Diez, Lisa [1 ]
Brognaro, Hevila [2 ]
Kraushar, Matthew L. [3 ]
Mielke, Thorsten [3 ]
Radbruch, Helena [4 ]
Kaniyappan, Senthil [5 ,6 ]
Falke, Sven [2 ]
Mandelkow, Eckhard [5 ,6 ]
Betzel, Christian [2 ]
Wegmann, Susanne [1 ]
机构
[1] German Ctr Neurodegenerat Dis DZNE, Berlin, Germany
[2] Univ Hamburg, Inst Biochem & Mol Biol, Lab Struct Biol Infect & Inflammat, Hamburg, Germany
[3] Max Planck Inst Mol Genet MOLGEN, Berlin, Germany
[4] Charit Berlin, Inst Neuropathol, Berlin, Germany
[5] German Ctr Neurodegenerat Dis DZNE, Bonn, Germany
[6] Univ Bonn, Dept Neurodegenerat Dis & Geriatr Psychiat, Bonn, Germany
关键词
aggregation; FLIM; liquid-liquid phase separation; MAPT; nuclear envelope; NUCLEOCYTOPLASMIC TRANSPORT; SIZE DISTRIBUTION; PROTEIN-TAU; IN-VITRO; PHOSPHORYLATION; AGGREGATION; MECHANISMS; NUCLEATION; PATHOLOGY; POLYMERS;
D O I
10.15252/embj.2021108882
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
Biomolecular condensation of the neuronal microtubule-associated protein Tau (MAPT) can be induced by coacervation with polyanions like RNA, or by molecular crowding. Tau condensates have been linked to both functional microtubule binding and pathological aggregation in neurodegenerative diseases. We find that molecular crowding and coacervation with RNA, two conditions likely coexisting in the cytosol, synergize to enable Tau condensation at physiological buffer conditions and to produce condensates with a strong affinity to charged surfaces. During condensate-mediated microtubule polymerization, their synergy enhances bundling and spatial arrangement of microtubules. We further show that different Tau condensates efficiently induce pathological Tau aggregates in cells, including accumulations at the nuclear envelope that correlate with nucleocytoplasmic transport deficits. Fluorescent lifetime imaging reveals different molecular packing densities of Tau in cellular accumulations and a condensate-like density for nuclear-envelope Tau. These findings suggest that a complex interplay between interaction partners, post-translational modifications, and molecular crowding regulates the formation and function of Tau condensates. Conditions leading to prolonged existence of Tau condensates may induce the formation of seeding-competent Tau and lead to distinct cellular Tau accumulations.
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页数:28
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共 92 条
  • [1] Liquid-liquid phase separation of the microtubule-binding repeats of the Alzheimer-related protein Tau
    Ambadipudi, Susmitha
    Biernat, Jacek
    Riedel, Dietmar
    Mandelkow, Eckhard
    Zweckstetter, Markus
    [J]. NATURE COMMUNICATIONS, 2017, 8
  • [2] TIA1 potentiates tau phase separation and promotes generation of toxic oligomeric tau
    Ash, Peter E. A.
    Lei, Shuwen
    Shattuck, Jenifer
    Boudeau, Samantha
    Carlomagno, Yari
    Medalla, Maria
    Mashimo, Bryce L.
    Socorro, Guillermo
    Al-Mohanna, Louloua F. A.
    Jiang, Lulu
    Ozturk, Muhammet M.
    Knobel, Mark
    Ivanov, Pavel
    Petrucelli, Leonard
    Wegmann, Susanne
    Kanaan, Nicholas M.
    Wolozin, Benjamin
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2021, 118 (09)
  • [3] Barghorn Stefan, 2005, Methods Mol Biol, V299, P35
  • [4] Physical principles of intracellular organization via active and passive phase transitions
    Berry, Joel
    Brangwynne, Clifford P.
    Haataja, Mikko
    [J]. REPORTS ON PROGRESS IN PHYSICS, 2018, 80 (04)
  • [5] Regulatory mechanisms of tau protein fibrillation under the conditions of liquid-liquid phase separation
    Boyko, Solomiia
    Surewicz, Krystyna
    Surewicz, Witold K.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2020, 117 (50) : 31882 - 31890
  • [6] Liquid-liquid phase separation of tau protein: The crucial role of electrostatic interactions
    Boyko, Solomiia
    Qi, Xu
    Chen, Tien-Hao
    Surewicz, Krystyna
    Surewicz, Witold K.
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2019, 294 (29) : 11054 - 11059
  • [7] NEUROPATHOLOGICAL STAGING OF ALZHEIMER-RELATED CHANGES
    BRAAK, H
    BRAAK, E
    [J]. ACTA NEUROPATHOLOGICA, 1991, 82 (04) : 239 - 259
  • [8] Neurofibrillary tangles and Alzheimer's disease
    Brion, JP
    [J]. EUROPEAN NEUROLOGY, 1998, 40 (03) : 130 - 140
  • [9] INHIBITION OF TUBULIN ASSEMBLY BY RNA AND OTHER POLYANIONS - EVIDENCE FOR A REQUIRED PROTEIN
    BRYAN, J
    NAGLE, BW
    DOENGES, KH
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1975, 72 (09) : 3570 - 3574
  • [10] The Cochaperone BAG2 Sweeps Paired Helical Filament-Insoluble Tau from the Microtubule
    Carrettiero, Daniel C.
    Hernandez, Israel
    Neveu, Pierre
    Papagiannakopoulos, Thales
    Kosik, Kenneth S.
    [J]. JOURNAL OF NEUROSCIENCE, 2009, 29 (07) : 2151 - 2161