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首页> 外文期刊>Analytical chemistry >Biphasic Liquid Microjunction Extraction for Profiling Neuronal RNA Modifications by Liquid Chromatography-Tandem Mass Spectrometry
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Biphasic Liquid Microjunction Extraction for Profiling Neuronal RNA Modifications by Liquid Chromatography-Tandem Mass Spectrometry

机译:双相液体微结萃取用于通过液相色谱 - 串联质谱分析神经元RNA修饰

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摘要

RNA modifications are emerging as critical players in the spatiotemporal regulation of gene expression. Although liquid chromatography-tandem mass spectrometry (LC-MS/MS) enables the simultaneous quantification of numerous enzymatically modified RNAs in a biological sample, conventional RNA extraction and enzymatic digestion protocols that are employed prior to analysis have precluded the application of this technique for small-volume samples. In this study, a biphasic liquid microjunction (LMJ) extraction system using coaxial capillaries that direct and aspirate extraction solvents onto a similar to 350 mu m diameter sample spot was developed and applied for the extraction of RNA from individual cell clusters in the central nervous system of the marine mollusk Aplysia californica. To maximize RNA recoveries, optimized extraction solvents consisting of 10% methanol and chloroform were evaluated under dynamic and static extraction conditions. An MS-compatible RNA digestion buffer was developed to minimize the number of sample-transfer steps and facilitate the direct enzymatic digestion of extracted RNA within the sample collection tube. Compared to RNA extraction using a conventional phenol-chloroform method, the LMJ-based method provided a 3-fold greater coverage of the neuronal epitranscriptome for similar amounts of tissues and also produced mRNA of sufficient purity for reverse transcription polymerase chain reaction amplification. Using this approach, the expression of RNA-modifying enzymes in a given neuronal cell cluster can be characterized and simultaneously correlated with the LC-MS/MS analysis of RNA modifications within the same subset of neurons.
机译:RNA修饰作为基因表达的时空调节中的关键球员。尽管液相色谱 - 串联质谱(LC-MS / MS)能够在生物样品中同时定量许多酶改性RNA,但在分析之前采用的常规RNA提取和酶消化方案排除了这种技术的应用-Volume样本。在该研究中,使用同轴毛细管的双相液体微结(LMJ)提取系统,即在类似于350μm的直径样品点上直接和吸出萃取溶剂,并施加来自中枢神经系统中的个体细胞簇的RNA海洋软体动物的Aplysia Californica。为了最大化RNA回收率,在动态和静态提取条件下评估由10%甲醇和氯仿组成的优化提取溶剂。开发了一种MS-兼容的RNA消化缓冲液以最小化样品转移步骤的数量,并促进样品收集管内提取的RNA的直接酶促消化。与使用常规酚氯仿方法的RNA提取相比,基于LMJ的方法为类似的组织量的神经元闰组提供了3倍的覆盖,并且还产生足够纯度的mRNA以进行逆转录聚合酶链反应扩增。使用这种方法,可以表征在给定的神经元细胞簇中的RNA修饰酶的表达和同时与神经元的同一子组中的RNA修饰的LC-MS / MS分析同时相关。

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