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Proteogenomics Reveals Orthologous Alternatively Spliced Proteoforms in the Same Human and Mouse Brain Regions with Differential Abundance in an Alzheimer’s Disease Mouse Model

机译:蛋白质组织揭示在同一人和小鼠脑区中的差异拼接蛋白质常规在阿尔茨海默病小鼠模型中具有差异丰度

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摘要

Alternative splicing (AS) may increase the number of proteoforms produced by a gene. Alzheimer’s disease (AD) is a neurodegenerative disease with well-characterized AS proteoforms. In this study, we used a proteogenomics strategy to build a customized protein sequence database and identify orthologous AS proteoforms between humans and mice on publicly available shotgun proteomics (MS/MS) data of the corpus callosum (CC) and olfactory bulb (OB). Identical proteotypic peptides of six orthologous AS proteoforms were found in both species: PKM1 (gene PKM/Pkm), STXBP1a (gene STXBP1/Stxbp1), Isoform 3 (gene HNRNPK/Hnrnpk), LCRMP-1 (gene CRMP1/Crmp1), SP3 (gene CADM1/Cadm1), and PKCβII (gene PRKCB/Prkcb). These AS variants were also detected at the transcript level by publicly available RNA-Seq data and experimentally validated by RT-qPCR. Additionally, PKM1 and STXBP1a were detected at higher abundances in a publicly available MS/MS dataset of the AD mouse model APP/PS1 than its wild type. These data corroborate other reports, which suggest that PKM1 and STXBP1a AS proteoforms might play a role in amyloid-like aggregate formation. To the best of our knowledge, this report is the first to describe PKM1 and STXBP1a overexpression in the OB of an AD mouse model. We hope that our strategy may be of use in future human neurodegenerative studies using mouse models.
机译:替代剪接(AS)可以增加由基因产生的蛋白质常规的数量。阿尔茨海默病(Ad)是一种神经变性疾病,具有良好的特征为蛋白质ortm。在这项研究中,我们使用了蛋白质组织策略来构建定制的蛋白质序列数据库,并在胼callosum(CC)和嗅球(OB)的公共霰弹枪蛋白质组学(MS / MS)数据上以植物和小鼠之间的蛋白质形式鉴定直译。在两种物种中发现了六种正向性的相同蛋白质肽肽:PKM1(基因PKM / PKM),STXBP1A(基因STXBP1 / STXBP1),同种型3(基因HNRNPK / HNRNPK),LCRMP-1(基因CRMP1 / CRMP1),SP3 (基因CADM1 / CADM1)和PKCβII(基因PRKCB / PRKCB)。通过公开的RNA-SEQ数据在转录物水平上检测到这些变体并通过RT-QPCR进行实验验证。此外,在广告鼠标模型APP / PS1的公开可用MS / MS数据集中,在较高的丰富中检测到PKM1和STXBP1A而不是其野生类型。这些数据证实了其他报告,该报告表明PKM1和STXBP1A作为蛋白质orts可能在淀粉样蛋白聚集体形成中发挥作用。据我们所知,本报告是第一个在广告鼠标模型中描述PKM1和STXBP1A过表达的PKM1和STXBP1A过度表达。我们希望我们的策略可能在未来使用小鼠模型的人类神经变性研究中使用。

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