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首页> 外文期刊>Proteome science >Label-free quantitative mass spectrometry analysis of differential protein expression in the developing cochlear sensory epithelium
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Label-free quantitative mass spectrometry analysis of differential protein expression in the developing cochlear sensory epithelium

机译:发育中的耳蜗感觉上皮中差异蛋白表达的无标记定量质谱分析

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Background The sensory epithelium of the inner ear converts the mechanical energy of sound to electro-chemical energy recognized by the central nervous system. This process is mediated by receptor cells known as hair cells that express proteins in a timely fashion with the onset of hearing. Methods The proteomes of 3, 14, and 30?day-old mice cochlear sensory epithelia were revealed, using label-free quantitative mass spectrometry (LTQ-Orbitrap). Statistical analysis using a one-way ANOVA followed by Bonferroni’s post-hoc test was used to show significant differences in protein expression. Ingenuity Pathway Analysis was used to observe networks of differentially expressed proteins, their biological processes, and associated diseases, while Cytoscape software was used to determine putative interactions with select biomarker proteins. These candidate biomarkers were further verified using Western blotting, while coimmunoprecipitation was used to verify putative partners determined using bioinformatics. Results We show that a comparison across all three proteomes shows that there are 447 differentially expressed proteins, with 387 differentially expressed between postnatal day 3 and 30. Ingenuity Pathway Analysis revealed ~?62% of postnatal day 3 downregulated proteins are involved in neurological diseases. Several proteins are expressed exclusively on P3, including Parvin α, Drebrin1 (Drb1), Secreted protein acidic and cysteine rich (SPARC), Transmembrane emp24 domain-containing protein 10 (Tmed10). Coimmunoprecipitations showed that Parvin and SPARC interact with integrin-linked protein kinase and the large conductance calcium-activated potassium channel, respectively. Conclusions Quantitative mass spectrometry revealed the identification of numerous differentially regulated proteins over three days of postnatal development. These data provide insights into functional pathways regulating normal sensory and supporting cell development in the cochlea that include potential biomarkers. Interacting partners of two of these markers suggest the importance of these complexes in regulating cellular structure and synapse development.
机译:背景技术内耳的感觉上皮将声音的机械能转换为中枢神经系统识别的电化学能。该过程由称为毛细胞的受体细胞介导,该受体细胞在听力发作时及时表达蛋白质。方法采用无标记定量质谱法(LTQ-Orbitrap)揭示3、14和30日龄小鼠耳蜗感觉上皮的蛋白质组。使用单向方差分析和Bonferroni事后检验进行的统计分析显示出蛋白质表达的显着差异。独创性途径分析用于观察差异表达蛋白的网络,其生物学过程和相关疾病,而Cytoscape软件用于确定与某些生物标记蛋白的假定相互作用。这些候选生物标志物使用蛋白质印迹法进一步验证,而共免疫沉淀法则用于验证使用生物信息学确定的推定伴侣。结果我们显示,对所有这三种蛋白质组进行的比较表明,存在447种差异表达的蛋白质,其中在出生后第3天到第30天之间差异表达了387种。精明途径分析显示,约有62%的出生后第3天被下调的蛋白质与神经系统疾病有关。几种蛋白质仅在P3上表达,包括Parvinα,Drebrin1(Drb1),酸性分泌蛋白和富含半胱氨酸的蛋白(SPARC),跨膜emp24结构域的蛋白10(Tmed10)。免疫共沉淀显示Parvin和SPARC分别与整合素连接的蛋白激酶和大电导钙激活的钾通道相互作用。结论定量质谱分析揭示了在出生后三天内对许多差异调节蛋白的鉴定。这些数据提供了对调节正常感觉并支持耳蜗中包括潜在生物标记物的细胞发育的功能性途径的见解。这些标记物中两个的相互作用伙伴表明,这些复合物在调节细胞结构和突触发育中的重要性。

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