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Goudsmit, Jaap

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Goudsmit

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Jaap

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Goudsmit, Jaap

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  • Publication

    Immunological memory to hyperphosphorylated tau in asymptomatic individuals

    (Springer Berlin Heidelberg, 2017) Pascual, Gabriel; Wadia, Jehangir S.; Zhu, Xueyong; Keogh, Elissa; Kükrer, Başak; van Ameijde, Jeroen; Inganäs, Hanna; Siregar, Berdien; Perdok, Gerrard; Diefenbach, Otto; Nahar, Tariq; Sprengers, Imke; Koldijk, Martin H.; der Linden, Els C. Brinkman-van; Peferoen, Laura A.; Zhang, Heng; Yu, Wenli; Li, Xinyi; Wagner, Michelle; Moreno, Veronica; Kim, Julie; Costa, Martha; West, Kiana; Fulton, Zara; Chammas, Lucy; Luckashenak, Nancy; Fletcher, Lauren; Holland, Trevin; Arnold, Carrie; Anthony Williamson, R.; Hoozemans, Jeroen J.; Apetri, Adrian; Bard, Frederique; Wilson, Ian A.; Koudstaal, Wouter; Goudsmit, Jaap

    Several reports have described the presence of antibodies against Alzheimer’s disease-associated hyperphosphorylated forms of tau in serum of healthy individuals. To characterize the specificities that can be found, we interrogated peripheral IgG+ memory B cells from asymptomatic blood donors for reactivity to a panel of phosphorylated tau peptides using a single-cell screening assay. Antibody sequences were recovered, cloned, and expressed as full-length IgGs. In total, 52 somatically mutated tau-binding antibodies were identified, corresponding to 35 unique clonal families. Forty-one of these antibodies recognize epitopes in the proline-rich and C-terminal domains, and binding of 26 of these antibodies is strictly phosphorylation dependent. Thirteen antibodies showed inhibitory activity in a P301S lysate seeded in vitro tau aggregation assay. Two such antibodies, CBTAU-7.1 and CBTAU-22.1, which bind to the proline-rich and C-terminal regions of tau, respectively, were characterized in more detail. CBTAU-7.1 recognizes an epitope that is similar to that of murine anti-PHF antibody AT8, but has different phospho requirements. Both CBTAU-7.1 and CBTAU-22.1 detect pathological tau deposits in post-mortem brain tissue. CBTAU-7.1 reveals a similar IHC distribution pattern as AT8, immunostaining (pre)tangles, threads, and neuritic plaques. CBTAU-22.1 shows selective detection of neurofibrillary changes by IHC. Taken together, these results suggest the presence of an ongoing antigen-driven immune response against tau in healthy individuals. The wide range of specificities to tau suggests that the human immune repertoire may contain antibodies that can serve as biomarkers or be exploited for therapy. Electronic supplementary material The online version of this article (doi:10.1007/s00401-017-1705-y) contains supplementary material, which is available to authorized users.

  • Publication

    A common antigenic motif recognized by naturally occurring human VH5–51/VL4–1 anti-tau antibodies with distinct functionalities

    (BioMed Central, 2018) Apetri, Adrian; Crespo, Rosa; Juraszek, Jarek; Pascual, Gabriel; Janson, Roosmarijn; Zhu, Xueyong; Zhang, Heng; Keogh, Elissa; Holland, Trevin; Wadia, Jay; Verveen, Hanneke; Siregar, Berdien; Mrosek, Michael; Taggenbrock, Renske; Ameijde, Jeroenvan; Inganäs, Hanna; van Winsen, Margot; Koldijk, Martin H.; Zuijdgeest, David; Borgers, Marianne; Dockx, Koen; Stoop, Esther J. M.; Yu, Wenli; Brinkman-van der Linden, Els C.; Ummenthum, Kimberley; van Kolen, Kristof; Mercken, Marc; Steinbacher, Stefan; de Marco, Donata; Hoozemans, Jeroen J.; Wilson, Ian A.; Koudstaal, Wouter; Goudsmit, Jaap

    Misfolding and aggregation of tau protein are closely associated with the onset and progression of Alzheimer’s Disease (AD). By interrogating IgG+ memory B cells from asymptomatic donors with tau peptides, we have identified two somatically mutated VH5–51/VL4–1 antibodies. One of these, CBTAU-27.1, binds to the aggregation motif in the R3 repeat domain and blocks the aggregation of tau into paired helical filaments (PHFs) by sequestering monomeric tau. The other, CBTAU-28.1, binds to the N-terminal insert region and inhibits the spreading of tau seeds and mediates the uptake of tau aggregates into microglia by binding PHFs. Crystal structures revealed that the combination of VH5–51 and VL4–1 recognizes a common Pro-Xn-Lys motif driven by germline-encoded hotspot interactions while the specificity and thereby functionality of the antibodies are defined by the CDR3 regions. Affinity improvement led to improvement in functionality, identifying their epitopes as new targets for therapy and prevention of AD. Electronic supplementary material The online version of this article (10.1186/s40478-018-0543-z) contains supplementary material, which is available to authorized users.