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High-purity circular RNA isolation method (RPAD) reveals vast collection of intronic circRNAs

机译:高纯度圆形RNA隔离方法(RPAD)揭示了大量内含硅卷

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High-throughput RNA sequencing methods coupled with specialized bioinformatic analyses have recently uncovered tens of thousands of unique circular (circ) RNAs, but their complete sequences, genes of origin and functions are largely unknown. Given that circRNAs lack free ends and are thus relatively stable, their association with microRNAs (miRNAs) and RNA-binding proteins (RBPs) can influence gene expression programs. While exoribonuclease treatment is widely used to degrade linear RNAs and enrich circRNAs in RNA samples, it does not efficiently eliminate all linear RNAs. Here, we describe a novel method for the isolation of highly pure circRNA populations involving RNase R treatment followed by Polyadenylation and poly(A)(+) RNA Depletion (RPAD), which removes linear RNA to near completion. High-throughput sequencing of RNA prepared using RPAD from human cervical carcinoma HeLa cells and mouse C2C12 myoblasts led to two surprising discoveries: (i) many exonic circRNA (EcircRNA) isoforms share an identical backsplice sequence but have different body sizes and sequences, and (ii) thousands of novel intronic circular RNAs (IcircRNAs) are expressed in cells. In sum, isolating high-purity circRNAs using the RPAD method can enable quantitative and qualitative analyses of circRNA types and sequence composition, paving the way for the elucidation of circRNA functions.
机译:最近耦合的高通量RNA测序方法最近发现了数万个独特的圆形(CIRC)RNA,但它们的完整序列,原产地的基因和函数主要是未知的。鉴于Circrnas缺乏自由末端并且因此相对稳定,它们与MicroRNA(miRNA)和RNA结合蛋白(RBPS)的关系可以影响基因表达程序。虽然放射性核酸酶处理被广泛用于降解线性RNA并在RNA样品中富集CircrNA,但它没有有效地消除所有线性RNA。在此,我们描述了一种新的方法,用于分离高纯纯CircrNA群,涉及RNase R治疗,然后是聚腺苷酸化和聚(A)(+)RNA耗尽(RPAD),其除去接近完成的线性RNA。使用来自人宫颈癌的RPAD制备的RNA的高通量测序Hela细胞和小鼠C2C12肌细胞导致了两个令人惊讶的发现:(i)许多偏僻的CircrNA(EcircrNA)同种型共享相同的反向序列,但具有不同的体尺寸和序列,并且( II)数以千计的新型内肠圆形RNA(ICIRCRNA)在细胞中表达。总之,使用RPAD方法隔离高纯度CircRNA可以使rescrNA类型和序列组成的定量和定性分析,为CircrNA功能施加铺平途径。

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