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Subtractive hybridization identifies novel differentially expressed ncRNA species in EBV-infected human B cells

机译:消减杂交可确定EBV感染的人B细胞中新型差异表达的ncRNA种类

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Non-protein-coding RNAs (ncRNAs) fulfill a wide range of cellular functions from protein synthesis to regulation of gene expression. Identification of novel regulatory ncRNAs by experimental approaches commonly includes the generation of specialized cDNA libraries encoding small ncRNA species. However, such identification is severely hampered by the presence of constitutively expressed and highly abundant ‘house-keeping' ncRNAs, such as ribosomal RNAs, small nuclear RNAs or transfer RNAs. We have developed a novel experimental strategy, designated as subtractive hybridization of ncRNA transcripts (SHORT) to specifically select and amplify novel regulatory ncRNAs, which are only expressed at certain stages or under specific growth conditions of cells. The method is based on the selective subtractive hybridization technique, formerly applied to the detection of differentially expressed mRNAs. As a model system, we applied SHORT to Epstein–Barr virus (EBV) infected human B cells. Thereby, we identified 21 novel as well as previously reported ncRNA species to be up-regulated during virus infection. Our method will serve as a powerful tool to identify novel functional ncRNAs acting as genetic switches in the regulation of fundamental cellular processes such as development, tissue differentiation or disease.
机译:非蛋白质编码RNA(ncRNA)具有从蛋白质合成到基因表达调控的多种细胞功能。通过实验方法鉴定新的调控ncRNA通常包括生成编码小的ncRNA种类的专门cDNA文库。但是,这种鉴定受到组成型表达和高度丰富的“看家” ncRNA(如核糖体RNA,小核RNA或转移RNA)的严重阻碍。我们已经开发出一种新颖的实验策略,称为ncRNA转录本的减性杂交(SHORT),以专门选择和扩增仅在某些阶段或在特定细胞生长条件下表达的新型调控性ncRNA。该方法基于选择性消减杂交技术,该技术以前用于检测差异表达的mRNA。作为模型系统,我们将SHORT应用于受爱泼斯坦-巴尔病毒(EBV)感染的人类B细胞。因此,我们确定了21种新的以及先前报道的ncRNA物种在病毒感染期间被上调。我们的方法将成为鉴定新型功能性ncRNA的有力工具,这些ncRNA在调控基本细胞过程(如发育,组织分化或疾病)中起着遗传开关的作用。

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