Intraneuronal sortilin aggregation relative to granulovacuolar degeneration, tau pathogenesis and sorfra plaque formation in human hippocampal formation.

Frontiers in Aging Neuroscience Pub Date : 2022-08-01 eCollection Date: 2022-01-01 DOI:10.3389/fnagi.2022.926904
Juan Jiang, Chen Yang, Jia-Qi Ai, Qi-Lei Zhang, Xiao-Lu Cai, Tian Tu, Lily Wan, Xiao-Sheng Wang, Hui Wang, Aihua Pan, Jim Manavis, Wei-Ping Gai, Chong Che, Ewen Tu, Xiao-Ping Wang, Zhen-Yan Li, Xiao-Xin Yan
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引用次数: 4

Abstract

Extracellular β-amyloid (Aβ) deposition and intraneuronal phosphorylated-tau (pTau) accumulation are the hallmark lesions of Alzheimer's disease (AD). Recently, "sorfra" plaques, named for the extracellular deposition of sortilin c-terminal fragments, are reported as a new AD-related proteopathy, which develop in the human cerebrum resembling the spatiotemporal trajectory of tauopathy. Here, we identified intraneuronal sortilin aggregation as a change related to the development of granulovacuolar degeneration (GVD), tauopathy, and sorfra plaques in the human hippocampal formation. Intraneuronal sortilin aggregation occurred as cytoplasmic inclusions among the pyramidal neurons, co-labeled by antibodies to the extracellular domain and intracellular C-terminal of sortilin. They existed infrequently in the brains of adults, while their density as quantified in the subiculum/CA1 areas increased in the brains from elderly lacking Aβ/pTau, with pTau (i.e., primary age-related tauopathy, PART cases), and with Aβ/pTau (probably/definitive AD, pAD/AD cases) pathologies. In PART and pAD/AD cases, the intraneuronal sortilin aggregates colocalized partially with various GVD markers including casein kinase 1 delta (Ck1δ) and charged multivesicular body protein 2B (CHMP2B). Single-cell densitometry established an inverse correlation between sortilin immunoreactivity and that of Ck1δ, CHMP2B, p62, and pTau among pyramidal neurons. In pAD/AD cases, the sortilin aggregates were reduced in density as moving from the subiculum to CA subregions, wherein sorfra plaques became fewer and absent. Taken together, we consider intraneuronal sortilin aggregation an aging/stress-related change implicating protein sorting deficit, which can activate protein clearance responses including via enhanced phosphorylation and hydrolysis, thereby promoting GVD, sorfra, and Tau pathogenesis, and ultimately, neuronal destruction and death.

Abstract Image

Abstract Image

Abstract Image

神经元内sortinin聚集与人海马形成中的颗粒空泡变性、tau发病机制和sorfra斑块形成有关。
细胞外β-淀粉样蛋白(Aβ)沉积和神经元内磷酸化tau蛋白(pTau)积累是阿尔茨海默病(AD)的标志性病变。最近,“sorfra”斑块被报道为一种新的ad相关的蛋白质病变,以sortilin c-末端片段的细胞外沉积命名,其在人类大脑中发展类似于tau病的时空轨迹。在这里,我们发现神经元内sortilin聚集与人类海马形成中的颗粒空泡变性(GVD)、牛头病和sorfra斑块的发展有关。在锥体神经元中,sortilin聚集以胞质包涵体的形式发生,由sortilin胞外结构域和胞内c端抗体共同标记。它们在成年人的大脑中很少存在,而在缺乏Aβ/pTau、pTau(即原发性年龄相关性tau病,PART病例)和Aβ/pTau(可能/终末性AD, pAD/AD病例)病理的老年人的大脑中,它们在枕下/CA1区域的密度增加。在PART和pAD/AD病例中,神经元内sortilin聚集物与多种GVD标记物部分共定位,包括酪蛋白激酶1δ (Ck1δ)和带电多泡体蛋白2B (CHMP2B)。单细胞密度测定证实锥体神经元中sortilin免疫反应性与Ck1δ、CHMP2B、p62和pTau呈负相关。在pAD/AD病例中,sortinin聚集物的密度随着从骨下到CA亚区域的移动而降低,其中sorfra斑块变得更少且不存在。综上所述,我们认为神经元内sortilin聚集是一种涉及蛋白质分选缺陷的衰老/应激相关变化,可以通过增强磷酸化和水解激活蛋白质清除反应,从而促进GVD、sorfra和Tau的发病机制,并最终导致神经元的破坏和死亡。
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