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Epitope analysis following active immunization with tau proteins reveals immunogens implicated in tau pathogenesis

机译:随着Tau蛋白的主动免疫后,表位分析显示出在Tau发病机制中涉及的免疫原

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Background Abnormal tau hyperphosphorylation and its accumulation into intra-neuronal neurofibrillary tangles are linked to neurodegeneration in Alzheimer?s disease and similar tauopathies. One strategy to reduce accumulation is through immunization, but the most immunogenic tau epitopes have so far remained unknown. To fill this gap, we immunized mice with recombinant tau to build a map of the most immunogenic tau epitopes. Methods Non-transgenic and rTg4510 tau transgenic mice aged 5 months were immunized with either human wild-type tau (Wt, 4R0N) or P301L tau (4R0N). Each protein was formulated in Quil A adjuvant. Sera and splenocytes of vaccinated mice were collected to assess the humoral and cellular immune responses to tau. We employed a peptide array assay to identify the most effective epitopes. Brain histology was utilized to measure the effects of vaccination on tau pathology and inflammation. Results Humoral immune responses following immunization demonstrated robust antibody titers (up to 1:80,000 endpoint titers) to each tau species in both mice models. The number of IFN-? producing T cells and their proliferation were also increased in splenocytes from immunized mice, indicating an increased cellular immune response, and tau levels and neuroinflammation were both reduced. We identified five immunogenic motifs within either the N-terminal (9-15 and 21-27 amino acids), proline rich (168-174 and 220-228 amino acids), or the C-terminal regions (427-438 amino acids) of the wild-type and P301L tau protein sequence. Conclusions Our study identifies five previously unknown immunogenic motifs of wild-type and mutated (P301L) tau protein. Immunization with both proteins resulted in reduced tau pathology and neuroinflammation in a tau transgenic model, supporting the efficacy of tau immunotherapy in tauopathy.
机译:背景技术Tau Tau超磷酸化及其进入神经元神经元纤维缠结的积累与阿尔茨海默病患中的神经变性和类似的末底部位有关。减少积累的一种策略是通过免疫免疫,但最常见的是迄今为止仍然未知。为了填补这种差距,我们用重组Tau免疫小鼠,以构建最免疫原性瘤表的地图。方法用人野生型TAU(WT,4R0N)或P301L TAU(4R0N)免疫5个月的非转基因和RTG4510 Tau转基因小鼠。将每种蛋白质在佐剂中配制。收集疫苗的小鼠的血清和脾细胞,以评估对TAU的体液和细胞免疫应答。我们使用肽阵列测定来鉴定最有效的表位。利用脑组织学,测量疫苗接种对TAU病理和炎症的影响。结果免疫后的静体免疫应答证明了两种小鼠模型中的每个Tau种类的稳健抗体滴度(最多1,:80,000个终点滴度)。 ifn-的数量?在免疫小鼠的脾细胞中产生T细胞及其增殖也增加,表明细胞免疫反应增加,TAU水平和神经炎性均均降低。我们鉴定了N-末端(9-15和21-27氨基酸),脯氨酸富含(168-174和220-222个氨基酸)或C末端区域(427-438氨基酸)内鉴定了五种免疫原性基序。野生型和P301L Tau蛋白序列。结论我们的研究鉴定了五种以前未知的野生型和突变(P301L)Tau蛋白的免疫原性术。用两种蛋白质免疫导致TAU转基因模型中的TAU病理和神经炎症,支持TAU免疫疗法在TauOpathy中的疗效。

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