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首页> 外文期刊>Advances in Experimental Medicine and Biology >Small RNA discovery and characterisation in eukaryotes using high-throughput approaches.
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Small RNA discovery and characterisation in eukaryotes using high-throughput approaches.

机译:使用高通量方法在真核生物中发现和鉴定小RNA。

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摘要

RNA silencing is a mechanism of genetic regulation that is mediated by short noncoding RNAs, or small RNAs (sRNAs). Regulatory interactions are established based on nucleotide sequence complementarity between the sRNAs and their targets. The development of new high-throughput sequencing technologies has accelerated the discovery of sRNAs in a variety of plants and animals. The use of these and other high-throughput technologies, such as microarrays, to measure RNA and protein concentrations of gene products potentially regulated by sRNAs has also been important for their functional characterisation. mRNAs targeted by sRNAs can produce new sRNAs or the protein encoded by the target mRNA can regulate other mRNAs. In either case the targeting sRNAs are parts of complex RNA networks therefore identifying and characterising sRNAs contribute to better understanding of RNA networks. In this chapter we will review RNA silencing, the different types of sRNAs that mediate it and the computational methods that have been developed to use high-throughput technologies in the study of sRNAs and their targets.
机译:RNA沉默是一种遗传调控机制,由短的非编码RNA或小RNA(sRNA)介导。基于sRNA与其靶标之间的核苷酸序列互补性建立调节相互作用。新的高通量测序技术的发展加速了各种植物和动物中sRNA的发现。使用这些和其他高通量技术(例如微阵列)来测量可能受sRNA调节的基因产物的RNA和蛋白质浓度,对于其功能表征也很重要。 sRNA靶向的mRNA可以产生新的sRNA,或者由靶mRNA编码的蛋白质可以调节其他mRNA。无论哪种情况,靶向sRNA都是复杂RNA网络的组成部分,因此鉴定和表征sRNA有助于更好地理解RNA网络。在本章中,我们将介绍RNA沉默,介导它的不同类型的sRNA以及为研究sRNA及其靶标而使用高通量技术开发的计算方法。

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