ApoE isoform- and microbiota-dependent progression of neurodegeneration in a mouse model of tauopathy

在tau蛋白病小鼠模型中,ApoE同种型和微生物群依赖性神经退行性变进展

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作者:Dong-Oh Seo ,David O'Donnell ,Nimansha Jain ,Jason D Ulrich ,Jasmin Herz ,Yuhao Li ,Mackenzie Lemieux ,Jiye Cheng ,Hao Hu ,Javier R Serrano ,Xin Bao ,Emily Franke ,Maria Karlsson ,Martin Meier ,Su Deng ,Chandani Desai ,Hemraj Dodiya ,Janaki Lelwala-Guruge ,Scott A Handley ,Jonathan Kipnis ,Sangram S Sisodia ,Jeffrey I Gordon ,David M Holtzman

Abstract

Tau-mediated neurodegeneration is a hallmark of Alzheimer's disease. Primary tauopathies are characterized by pathological tau accumulation and neuronal and synaptic loss. Apolipoprotein E (ApoE)-mediated neuroinflammation is involved in the progression of tau-mediated neurodegeneration, and emerging evidence suggests that the gut microbiota regulates neuroinflammation in an APOE genotype-dependent manner. However, evidence of a causal link between the microbiota and tau-mediated neurodegeneration is lacking. In this study, we characterized a genetically engineered mouse model of tauopathy expressing human ApoE isoforms reared under germ-free conditions or after perturbation of their gut microbiota with antibiotics. Both of these manipulations reduced gliosis, tau pathology, and neurodegeneration in a sex- and ApoE isoform-dependent manner. The findings reveal mechanistic and translationally relevant interrelationships between the microbiota, neuroinflammation, and tau-mediated neurodegeneration.

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