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首页> 外文期刊>Journal of Alzheimer's disease: JAD >Methionine Sulfoxide Reductase-B3 (MsrB3) Protein Associates with Synaptic Vesicles and its Expression Changes in the Hippocampi of Alzheimer's Disease Patients
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Methionine Sulfoxide Reductase-B3 (MsrB3) Protein Associates with Synaptic Vesicles and its Expression Changes in the Hippocampi of Alzheimer's Disease Patients

机译:甲硫氨酸亚砜还原酶-B3(MSRB3)蛋白质与突触囊泡及其在阿尔茨海默病患者海马的表达变化及其表达变化

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Genome-wide association studies (GWAS) identified susceptibility loci associated with decreased hippocampal volume, and found hippocampal subfield-specific effects at MSRB3 (methionine sulfoxide reductase-B3). The MSRB3 locus was also linked to increased risk for late onset Alzheimer's disease (AD). In this study, we uncovered novel sites of MsrB3 expression in CA pyramidal layer and arteriolar walls by using automated immunohistochemistry on hippocampal sections from 23 individuals accompanied by neuropathology reports and clinical dementia rating scores. Controls, cognitively intact subjects with no hippocampal neurofibrillary tangles, exhibited MsrB3 signal as distinct but rare puncta in CA1 pyramidal neuronal somata. In CA3, however, MsrB3-immunoreactivity was strongest in the neuropil of the pyramidal layer. These patterns were replicated in rodent hippocampi where ultrastructural and immunohistofluorescence analysis revealed MsrB3 signal associated with synaptic vesicles and colocalized with mossy fiber terminals. In AD subjects, the number of CA1 pyramidal neurons with frequent, rather than rare, MsrB3-immunoreactive somatic puncta increased in comparison to controls. This change in CA1 phenotype correlated with the occurrence of AD pathological hallmarks. Moreover, the intensity of MsrB3 signal in the neuropil of CA3 pyramidal layer correlated with the signal pattern in neurons of CA1 pyramidal layer that was characteristic of cognitively intact individuals. Finally, MsrB3 signal in the arteriolar walls in the hippocampal white matter decreased in AD patients. This characterization of GWAS-implicated MSRB3 protein expression in human hippocampus suggests that patterns of neuronal and vascular MsrB3 protein expression reflect or underlie pathology associated with AD.
机译:基因组 - 范围的协会研究(GWAs)鉴定了与海马体积降低相关的易感位点,并在MSRB3(甲硫氨酸亚砜还原酶-B3)中发现了海马子域特异性效果。 MSRB3基因座也与晚期爆发性阿尔茨海默病(AD)的风险增加有关。在这项研究中,我们通过使用自动免疫组织化学在来自神经病理学报告和临床痴呆评级分数的23个个体的海马部分上的自动免疫组化,发现了在Ca锥形层和动脉膜壁中的MSRB3表达的新网站。对照,认知性不含海马神经原纤维缠结的受试者,在CA1金字塔神经元躯体上表现出MSRB3信号,例如罕见但罕见的斑点。然而,在Ca 3中,在金字塔层的神经岩中,MSRB3-免疫反应性最强。这些模式在啮齿动物海马中复制,其中超微结构和免疫荧光分析显示与突触囊泡相关的MSRB3信号,并用苔藓纤维终端覆盖。在AD主题中,与对照组相比,CA1金字塔神经元的数量频繁,而不是罕见的MSRB3-免疫反应体细胞旁观。 Ca1表型的这种变化与广告病理标志的发生相关。此外,Ca3金字塔层的神经细胞中MSRB3信号的强度与Ca1金字塔层中的神经元中的信号图案相关,所述CA1金字塔层的特征是认知完整的个体的特征。最后,AD患者的海马白土中的动脉轴壁中的MSRB3信号降低。对人类海马的GWAS暗集的MSRB3蛋白表达的这种表征表明神经元和血管MSRB3蛋白表达的模式反映或利于与AD相关的病理学。

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