APOE3-R136S mutation confers resilience against tau pathology via cGAS-STING-IFN inhibition
Naguib, S. A.; Lopez-Lee, C.; Torres, E. R.; Lee, S.-I.; Zhu, J.; Zhu, D.; Ye, P.; Norman, K.; Zhao, M.; Wong, M. Y.; Ambaw, Y.; Castaneda, R.; Wang, W.; Patel, T.; Bhagwat, M.; Norinsky, R.; Mok, S.-A.; Walther, T. C.; Farese, R. C.; Luo, W.; Sinha, S.; Wu, Z.; Fan, L.; Gong, S.; Gan, L.
Show abstract
The Christchurch mutation (R136S) on the APOE3 (E3S/S) gene is associated with attenuation of tau load and cognitive decline despite the presence of a causal PSEN1 mutation and high levels of amyloid beta pathology in the carrier1. However, the specific molecular mechanisms enabling the E3S/S mutation to mitigate tau-induced neurodegeneration remain unclear. Here, we replaced mouse ApoE with wild-type human E3 or E3S/S on a tauopathy background. The R136S mutation markedly decreased tau load and protected against tau-induced synaptic loss, myelin loss, and reduction in theta and gamma powers. Additionally, the R136S mutation reduced interferon response to tau pathology in both mouse and human microglia, suppressing cGAS-STING activation. Treating tauopathy mice carrying wild-type E3 with a cGAS inhibitor protected against tau-induced synaptic loss and induced similar transcriptomic alterations to those induced by the R136S mutation across brain cell types. Thus, suppression of microglial cGAS-STING-IFN pathway plays a central role in mediating the protective effects of R136S against tauopathy. One-sentence summaryThe R136S mutation on APOE3 enhances resistance to tau-related pathology and toxicity by downregulating the cGAS-STING-IFN signaling pathway.
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