4.7 Article

Inhibition of Tau seeding by targeting Tau nucleation core within neurons with a single domain antibody fragment

Journal

MOLECULAR THERAPY
Volume 30, Issue 4, Pages 1484-1499

Publisher

CELL PRESS
DOI: 10.1016/j.ymthe.2022.01.009

Keywords

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Funding

  1. Nord Region Council
  2. CNRS
  3. European Union
  4. LabEx (Laboratory of Excel-lence) DISTALZ (Development of Innovative Strategies for a Trans-disciplinary approach to Alzheimer's disease) [ANR-11-LABX-01]
  5. European Union project AgedBrainSYSBIO [305299]
  6. ANR [ANR-18-CE44-0016]
  7. LiCEND (Lille Center of Excellence in Neurodegenerative Disorders)
  8. Inserm
  9. Metropole Europeenne de Lille
  10. FEDER
  11. In-stitut Pasteur de Lille
  12. French Research Ministry
  13. Univ. Lille.
  14. IR-RMN-THC FR 3050 CNRS
  15. I-site ULNE (project TUNABLE)
  16. Agence Nationale de la Recherche (ANR) [ANR-18-CE44-0016] Funding Source: Agence Nationale de la Recherche (ANR)

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The study demonstrates the effectiveness of VHH Z70 in inhibiting Tau aggregation and reducing pathological Tau accumulation in brain neurons. By specifically targeting Tau within cells, VHH Z70 provides an immunological tool for targeting the intra-cellular compartment in tauopathies.
Tau proteins aggregate into filaments in brain cells in Alzheimer's disease and related disorders referred to as tauopathies. Here, we used fragments of camelid heavy-chain-only antibodies (VHHs or single domain antibody fragments) targeting Tau as immuno-modulators of its pathologic seeding. A VHH issued from the screen against Tau of a synthetic phage-display library of humanized VHHs was selected for its capacity to bind Tau microtubule-binding domain, composing the core of Tau fibrils. This parent VHH was optimized to improve its biochemical properties and to act in the intra-cellular compartment, resulting in VHH Z70. VHH Z70 precisely binds the PHF6 sequence, known for its nucleation capacity, as shown by the crystal structure of the complex. VHH Z70 was more efficient than the parent VHH to inhibit in vitro Tau aggregation in heparin-induced assays. Expression of VHH Z70 in a cellular model of Tau seeding also decreased the aggregation-reporting fluorescence signal. Finally, intra-cellular expression of VHH Z70 in the brain of an established tauopathy mouse seeding model demonstrated its capacity to mitigate accumulation of pathological Tau. VHH Z70, by targeting Tau inside brain neurons, where most of the pathological Tau resides, provides an immunological tool to target the intra-cellular compartment in tauopathies.

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