Diminished Neuronal ESCRT-0 Function Exacerbates AMPA Receptor Derangement and Accelerates Prion-Induced Neurodegeneration

神经退行性变 AMPA受体 ESCRT公司 泛素 内体 细胞生物学 生物 蛋白质稳态 突触 小胶质细胞 谷氨酸受体 神经科学 受体 免疫学 细胞内 生物化学 疾病 医学 内科学 基因 炎症
作者
Jessica Lawrence,Patricia Aguilar‐Calvo,Daniel Ojeda-Juárez,Helen Khuu,Katrin Soldau,Donald Pizzo,Jin Wang,Adela Malik,Timothy F. Miles,Erin E. Sullivan,Brent Aulston,Seung M. Song,Julia A. Callender,Henry Sánchez,Michael D. Geschwind,Subhojit Roy,Robert A. Rissman,Jesse Trejo,Nobuyuki Tanaka,Chengbiao Wu,Xu Chen,Gentry N. Patrick,Christina J. Sigurdson
出处
期刊:The Journal of Neuroscience [Society for Neuroscience]
卷期号:43 (21): 3970-3984 被引量:2
标识
DOI:10.1523/jneurosci.1878-22.2023
摘要

Endolysosomal defects in neurons are central to the pathogenesis of prion and other neurodegenerative disorders. In prion disease, prion oligomers traffic through the multivesicular body (MVB) and are routed for degradation in lysosomes or for release in exosomes, yet how prions impact proteostatic pathways is unclear. We found that prion-affected human and mouse brain showed a marked reduction in Hrs and STAM1 (ESCRT-0), which route ubiquitinated membrane proteins from early endosomes into MVBs. To determine how the reduction in ESCRT-0 impacts prion conversion and cellular toxicity in vivo , we prion-challenged conditional knockout mice (male and female) having Hrs deleted from neurons, astrocytes, or microglia. The neuronal, but not astrocytic or microglial, Hrs-depleted mice showed a shortened survival and an acceleration in synaptic derangements, including an accumulation of ubiquitinated proteins, deregulation of phosphorylated AMPA and metabotropic glutamate receptors, and profoundly altered synaptic structure, all of which occurred later in the prion-infected control mice. Finally, we found that neuronal Hrs (nHrs) depletion increased surface levels of the cellular prion protein, PrP C , which may contribute to the rapidly advancing disease through neurotoxic signaling. Taken together, the reduced Hrs in the prion-affected brain hampers ubiquitinated protein clearance at the synapse, exacerbates postsynaptic glutamate receptor deregulation, and accelerates neurodegeneration. SIGNIFICANCE STATEMENT Prion diseases are rapidly progressive neurodegenerative disorders characterized by prion aggregate spread through the central nervous system. Early disease features include ubiquitinated protein accumulation and synapse loss. Here, we investigate how prion aggregates alter ubiquitinated protein clearance pathways (ESCRT) in mouse and human prion-infected brain, discovering a marked reduction in Hrs. Using a prion-infection mouse model with neuronal Hrs (nHrs) depleted, we show that low neuronal Hrs is detrimental and markedly shortens survival time while accelerating synaptic derangements, including ubiquitinated protein accumulation, indicating that Hrs loss exacerbates prion disease progression. Additionally, Hrs depletion increases the surface distribution of prion protein (PrP C ), linked to aggregate-induced neurotoxic signaling, suggesting that Hrs loss in prion disease accelerates disease through enhancing PrP C -mediated neurotoxic signaling.
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