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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Proteomic Profile of Mouse Brain Aging Contributions to Mitochondrial Dysfunction, DNA Oxidative Damage, Loss of Neurotrophic Factor, and Synaptic and Ribosomal Proteins
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Proteomic Profile of Mouse Brain Aging Contributions to Mitochondrial Dysfunction, DNA Oxidative Damage, Loss of Neurotrophic Factor, and Synaptic and Ribosomal Proteins

机译:小鼠脑老化的蛋白质组学概况对线粒体功能障碍,DNA氧化损伤,神经营养因子丧失,以及突触和核糖体蛋白

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The deleterious effects of aging on the brain remain to be fully elucidated. In the present study, proteomic changes of young (4-month) and aged (16-month) B6129SF2/J male mouse hippocampus and cerebral cortex were investigated by using nano liquid chromatography tandem mass spectrometry (NanoLC-ESI-MS/MS) combined with tandem mass tag (TMT) labeling technology. Compared with the young animals, 390 hippocampal proteins (121 increased and 269 decreased) and 258 cortical proteins (149 increased and 109 decreased) changed significantly in the aged mouse. Bioinformatic analysis indicated that these proteins are mainly involved in mitochondrial functions (FIS1, DRP1), oxidative stress (PRDX6, GSTP1, and GSTM1), synapses (SYT12, GLUR2), ribosome (RPL4, RPS3), cytoskeletal integrity, transcriptional regulation, and GTPase function. The mitochondrial fission-related proteins FIS1 and DRP1 were significantly increased in the hippocampus and cerebral cortex of the aged mice. Further results in the hippocampus showed that ATP content was significantly reduced in aged mice. A neurotrophin brain-derived neurotrophic factor (BNDF), a protein closely related with synaptic plasticity and memory, was also significantly decreased in the hippocampus of the aged mice, with the tendency of synaptic protein markers including complexin-2, synaptophysin, GLUR2, PSD95, NMDAR2A, and NMDAR1. More interestingly, 8-hydroxydeoxyguanosine (8-OHdG), a marker of DNA oxidative damage, increased as shown by immunofluorescence staining. In summary, we demonstrated that aging is associated with systemic changes involving mitochondrial dysfunction, energy reduction, oxidative stress, loss of neurotrophic factor, synaptic proteins, and ribosomal proteins, as well as molecular deficits involved in various physiological/pathological processes.
机译:衰老对大脑上的有害影响仍然被完全阐明。通过使用纳米液相色谱串联质谱(Nanolc-ESI-MS / MS),研究了年轻(4个月)和年龄(16个月)和年龄(16个月)和老化(16个月)B6129SF2 / J雄性小鼠海马和脑皮质的蛋白质组学变化串联质量标签(TMT)标签技术。与幼体相比,在老年小鼠中,390个海马蛋白(121个增加和269例)和258个皮质蛋白(149增加,109)变化。生物信息分析表明,这些蛋白质主要参与线粒体功能(FIS1,DRP1),氧化应激(PRDX6,GSTP1和GSTM1),突触(SYT12,GLUR2),核糖体(RPL4,RPS3),细胞骨架完整性,转录调节和GTPASE功能。海马和脑皮层的线粒体裂变相关蛋白质FIS1和DRP1显着增加了老年小鼠的脑皮质。进一步产生海马表明,老年小鼠的ATP含量显着降低。在老年小鼠的海马中,一种神经营养蛋白脑衍生的神经营养因子(BNDF),与突触塑性和记忆密切相关的蛋白质,在突触蛋白标记,包括复合素-2,Sypaptophysin,Glur2,PSD95的趋势,也显着降低。 ,nmdar2a和nmdar1。更有趣的是,8-羟基氧基胍(8-OHDG),DNA氧化损伤的标志物,如免疫荧光染色所示增加。总之,我们证明,老化与涉及线粒体功能障碍,能量减少,氧化应激,神经营养因子,突触蛋白质丧失,突触蛋白质和核糖体蛋白的损失相关的系统性变化有关,以及各种生理/病理过程所涉及的分子缺陷。

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