1. Enhancement of therapeutic potential of a naturally occurring human antibody targeting a phosphorylated Ser422 containing epitope on pathological tau
- Author
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Marianne Borgers, Jeroen J.M. Hoozemans, Roosmarijn Janson, Jarek Juraszek, Lore Delbroek, Berdien Siregar, Marc Mercken, Imke Sprengers, Adrian Apetri, Jeroen van Ameijde, Roland Willems, Kristof Van Kolen, Wouter Koudstaal, Koen Dockx, Gabriel Pascual, Tariq Nahar, Hanneke Verveen, Stefan Steinbacher, Rosa Crespo, Pathology, and Amsterdam Neuroscience - Neurodegeneration
- Subjects
Male ,Models, Molecular ,0301 basic medicine ,Antibody Affinity ,Microscopy, Atomic Force ,Epitope ,lcsh:RC346-429 ,Epitopes ,Mice ,0302 clinical medicine ,Serine ,Phosphorylation ,Aged, 80 and over ,biology ,Chemistry ,Brain ,Middle Aged ,3. Good health ,Cell biology ,Nucleation ,Female ,Autopsy ,Antibody ,Genetically modified mouse ,Monoclonal antibody ,medicine.drug_class ,Tau protein ,Mutagenesis (molecular biology technique) ,Mice, Transgenic ,tau Proteins ,Intervention ,Protein Aggregation, Pathological ,Antibodies ,Pathology and Forensic Medicine ,03 medical and health sciences ,Cellular and Molecular Neuroscience ,Aggregation ,Alzheimer Disease ,medicine ,Animals ,Humans ,lcsh:Neurology. Diseases of the nervous system ,Aged ,Dose-Response Relationship, Drug ,Research ,Native chemical ligation ,In vitro ,030104 developmental biology ,Mutagenesis ,Mutation ,biology.protein ,Neurology (clinical) ,Tau ,030217 neurology & neurosurgery - Abstract
Aggregation of tau protein and spreading of tau aggregates are pivotal pathological processes in a range of neurological disorders. Accumulating evidence suggests that immunotherapy targeting tau may be a viable therapeutic strategy. We have previously described the isolation of antibody CBTAU-22.1 from the memory B-cell repertoire of healthy human donors. CBTAU-22.1 was shown to specifically bind a disease-associated phosphorylated epitope in the C-terminus of tau (Ser422) and to be able to inhibit the spreading of pathological tau aggregates from P301S spinal cord lysates in vitro, albeit with limited potency. Using a combination of rational design and random mutagenesis we have derived a variant antibody with improved affinity while maintaining the specificity of the parental antibody. This affinity improved antibody showed greatly enhanced potency in a cell-based immunodepletion assay using paired helical filaments (PHFs) derived from human Alzheimer’s disease (AD) brain tissue. Moreover, the affinity improved antibody limits the in vitro aggregation propensity of full length tau species specifically phosphorylated at position 422 produced by employing a native chemical ligation approach. Together, these results indicate that in addition to being able to inhibit the spreading of pathological tau aggregates, the matured antibody can potentially also interfere with the nucleation of tau which is believed to be the first step of the pathogenic process. Finally, the functionality in a P301L transgenic mice co-injection model highlights the therapeutic potential of human antibody dmCBTAU-22.1. Electronic supplementary material The online version of this article (10.1186/s40478-018-0562-9) contains supplementary material, which is available to authorized users.
- Published
- 2018
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