Immunotherapies Targeting the Amyotrophic Lateral Sclerosis-Associated Protein TDP-43

Abstract

Transactive response (TAR) DNA-binding protein of 43 kDa (TDP-43) pathology, including fibrillar aggregates and mutations, develops in amyotrophic lateral sclerosis (ALS) and is characterized by hyperphosphorylation and aggregation patterns, a mechanism largely understudied. In addition, ALS remains without a cure. Herein, in vitro aggregation of phosphorylated TDP-43 was explored, and the anti-TDP-43 antibodies tested for their inhibitor efficacies. Additionally, in vitro phosphorylation of TDP-43 by protein kinases was conducted to identify which protein kinases catalyze phosphorylation. The aggregation of phosphorylated and unphosphorylated full-length TDP-43 protein (pS410) was monitored by transmission electron microscopy (TEM), turbidity absorbance, and thioflavin (ThT) fluorescence spectroscopy. The protein aggregates were largely insoluble, ThT-positive and characterized with heterogeneous morphologies. Antibodies specific to epitopes within the RNA-recognition motifs and the C-terminal domains reduced the formation of β-sheets and insoluble aggregates, with outcomes highly dependent on the type of antibodies, indicating dual functionality. The only protein kinase able to phosphorylate TDP-43 at S410 was MARK4, indicating its role in the onset of PTMs in the protein. Thus, targeting TDP-43 epitopes for inhibition of aggregation and in vitro phosphorylation represent viable biochemical assays for screening protein kinase inhibitors as potential drugs against ALS.

Author Keywords: aggregation, ALS, antibody-based inhibition, phosphorylation, protein kinase, TDP-43

    Item Description
    Type
    Contributors
    Creator (cre): Esposto, Josephine
    Thesis advisor (ths): Martic, Sanela
    Degree committee member (dgc): Rafferty, Steven
    Degree committee member (dgc): Huber, Robert
    Degree granting institution (dgg): Trent University
    Date Issued
    2021
    Date (Unspecified)
    2021
    Place Published
    Peterborough, ON
    Language
    Extent
    159 pages
    Rights
    Copyright is held by the author, with all rights reserved, unless otherwise noted.
    Local Identifier
    TC-OPET-10925
    Publisher
    Trent University
    Degree
    Master of Science (M.Sc.): Environmental and Life Sciences