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Proteomic and Transcriptomic Analysis Identify Spliceosome as a Significant Component of the Molecular Machinery in the Pituitary Tumors Derived from

机译:蛋白质组学和转录组分析鉴定抗磷酸作为垂体肿瘤中分子机械的显着成分

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摘要

Background: Pituitary adenomas (PA) are the second most common tumor in the central nervous system and have low counts of mutated genes. Splicing occurs in 95% of the coding RNA. There is scarce information about the spliceosome and mRNA-isoforms in PA, and therefore we carried out proteomic and transcriptomic analysis to identify spliceosome components and mRNA isoforms in PA. Methods: Proteomic profile analysis was carried out by nano-HPLC and mass spectrometry with a quadrupole time-of-flight mass spectrometer. The mRNA isoforms and transcriptomic profiles were carried out by microarray technology. With proteins and mRNA information we carried out Gene Ontology and exon level analysis to identify splicing-related events. Results: Approximately 2000 proteins were identified in pituitary tumors. Spliceosome proteins such as SRSF1, U2AF1 and RBM42 among others were found in PA. These results were validated at mRNA level, which showed up-regulation of spliceosome genes in PA. Spliceosome-related genes segregate and categorize PA tumor subtypes. The PA showed alterations in CDK18 and THY1 mRNA isoforms which could be tumor specific. Conclusions: Spliceosome components are significant constituents of the PA molecular machinery and could be used as molecular markers and therapeutic targets. Splicing-related genes and mRNA-isoforms profiles characterize tumor subtypes.
机译:背景:垂体腺瘤(PA)是中枢神经系统中最常见的肿瘤,突变基因的数量低。剪接发生在95%的编码RNA中。有关PA中的抗磷酸体和mRNA同种型的稀缺信息,因此我们进行了蛋白质组学和转录组分分析,以鉴定PA中的缩写剂组分和mRNA同种型。方法:用纳米HPLC和质谱分析,具有四极型飞行时间质谱仪的质谱分析。通过微阵列技术进行mRNA同种型和转录组谱。使用蛋白质和mRNA信息,我们进行了基因本体论和外显子水平分析,以确定与剪接相关的事件。结果:在垂体肿瘤中鉴定了大约2000种蛋白质。在PA中发现了SRSF1,U2AF1和RBM42等SRSF1,U2AF1和RBM42等抗缩蛋白酶体蛋白。这些结果在mRNA水平上验证,其显示PA中的抗乳糖体基因的上调。与剪切相关的基因隔离和分类PA肿瘤亚型。 PA在CDK18和Thy1 mRNA同种型中显示出改变,这可能是肿瘤特异性的。结论:抗缩剂组分是PA分子机械的重要成分,可用作分子标记和治疗靶标。剪接相关基因和mRNA - 异紫色曲面表征肿瘤亚型。

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