Complement receptor 4 mediates the clearance of extracellular tau fibrils by microglia

Author:

Yoo Chang Jae12,Choi Youngtae1,Bok Eugene1,Lin Yuxi3,Cheon Mookyung1,Lee Young‐Ho34567,Kim Jaekwang1ORCID

Affiliation:

1. Dementia Research Group Korea Brain Research Institute (KBRI) Daegu South Korea

2. Department of Brain Sciences Daegu Gyeongbuk Institute of Science & Technology (DGIST) South Korea

3. Research Center for Bioconvergence Analysis Korea Basic Science Institute (KBSI) Ochang South Korea

4. Bio‐Analytical Science University of Science and Technology Daejeon South Korea

5. Graduate School of Analytical Science and Technology Chungnam National University Daejeon South Korea

6. Department of Systems Biotechnology Chung‐Ang University Anseong‐si South Korea

7. Frontier Research Institute for Interdisciplinary Sciences Tohoku University Sendai Japan

Abstract

Tauopathies exhibit a characteristic accumulation of misfolded tau aggregates in the brain. Tau pathology shows disease‐specific spatiotemporal propagation through intercellular transmission, which is closely correlated with the progression of clinical manifestations. Therefore, identifying molecular mechanisms that prevent tau propagation is critical for developing therapeutic strategies for tauopathies. The various innate immune receptors, such as complement receptor 3 (CR3) and complement receptor 4 (CR4), have been reported to play a critical role in the clearance of various extracellular toxic molecules by microglia. However, their role in tau clearance has not been studied yet. In the present study, we investigated the role of CR3 and CR4 in regulating extracellular tau clearance. We found that CR4 selectively binds to tau fibrils but not to tau monomers, whereas CR3 does not bind to either of them. Inhibiting CR4, but not CR3, significantly reduces the uptake of tau fibrils by BV2 cells and primary microglia. By contrast, inhibiting CR4 has no effect on the uptake of tau monomers by BV2 cells. Furthermore, inhibiting CR4 suppresses the clearance of extracellular tau fibrils, leading to more seed‐competent tau fibrils remaining in the extracellular space relative to control samples. We also provide evidence that the expression of CR4 is upregulated in the brains of human Alzheimer's disease patients and the PS19 mouse model of tauopathy. Taken together, our data strongly support that CR4 is a previously undescribed receptor for the clearance of tau fibrils in microglia and may represent a novel therapeutic target for tauopathy.

Funder

Ministry of Science and ICT, South Korea

Publisher

Wiley

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