Person: Devos, Sarah
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Publication Characterization of TauC3 antibody and demonstration of its potential to block tau propagation
(Public Library of Science, 2017) Nicholls, Samantha B.; Devos, Sarah; Commins, Caitlin; Nobuhara, Chloe; Bennett, Rachel; Corjuc, Diana L.; Maury, Eduardo; Eftekharzadeh, Bahareh; Akingbade, Ololade; Fan, Zhanyun; Roe, Allyson D.; Takeda, Shuko; Wegmann, Susanne; Hyman, BradleyThe spread of neurofibrillary tangle (NFT) pathology through the human brain is a hallmark of Alzheimer’s disease (AD), which is thought to be caused by the propagation of “seeding” competent soluble misfolded tau. “TauC3”, a C-terminally truncated form of tau that is generated by caspase-3 cleavage at D421, has previously been observed in NFTs and has been implicated in tau toxicity. Here we show that TauC3 is found in the seeding competent high molecular weight (HMW) protein fraction of human AD brain. Using a specific TauC3 antibody, we were able to substantially block the HMW tau seeding activity of human AD brain extracts in an in vitro tau seeding FRET assay. We propose that TauC3 could contribute to the templated tau misfolding that leads to NFT spread in AD brains.
Publication Neuronal uptake and propagation of a rare phosphorylated high-molecular-weight tau derived from Alzheimer's disease brain
(Nature Pub. Group, 2015) Takeda, Shuko; Wegmann, Susanne; Cho, Hansang; Devos, Sarah; Commins, Caitlin; Roe, Allyson D.; Nicholls, Samantha B.; Carlson, George A.; Pitstick, Rose; Nobuhara, Chloe K.; Costantino, Isabel; Frosch, Matthew; Müller, Daniel J.; Irimia, Daniel; Hyman, BradleyTau pathology is known to spread in a hierarchical pattern in Alzheimer's disease (AD) brain during disease progression, likely by trans-synaptic tau transfer between neurons. However, the tau species involved in inter-neuron propagation remains unclear. To identify tau species responsible for propagation, we examined uptake and propagation properties of different tau species derived from postmortem cortical extracts and brain interstitial fluid of tau-transgenic mice, as well as human AD cortices. Here we show that PBS-soluble phosphorylated high-molecular-weight (HMW) tau, though very low in abundance, is taken up, axonally transported, and passed on to synaptically connected neurons. Our findings suggest that a rare species of soluble phosphorylated HMW tau is the endogenous form of tau involved in propagation and could be a target for therapeutic intervention and biomarker development.