Sinha Tanvi, Sadhukhan Susovan, Panda Amaresh C
Institute of Life Sciences, Nalco Square, Bhubaneswar, Odisha, India.
Methods Mol Biol. 2025;2883:343-362. doi: 10.1007/978-1-0716-4290-0_15.
High-throughput sequencing technologies and innovative bioinformatics tools discovered that most of the genome is transcribed into RNA. However, only a fraction of the RNAs in cell translates into proteins, while the majority of them are categorized as noncoding RNAs (ncRNAs). The ncRNAs with more than 200 nt without protein-coding ability are termed long noncoding RNAs (lncRNAs). Hundreds of studies established that lncRNAs are a crucial RNA family regulating gene expression. Regulatory RNAs, including lncRNAs, modulate gene expression by interacting with RNA, DNA, and proteins. Several databases and computational tools have been developed to explore the functions of lncRNAs in cellular physiology. This chapter discusses the tools available for lncRNA functional analysis and provides a detailed workflow for the computational analysis of lncRNAs.
高通量测序技术和创新的生物信息学工具发现,基因组的大部分都转录为RNA。然而,细胞中的RNA只有一小部分会翻译成蛋白质,而它们中的大多数被归类为非编码RNA(ncRNA)。长度超过200个核苷酸且无蛋白质编码能力的ncRNA被称为长链非编码RNA(lncRNA)。数百项研究证实,lncRNA是调节基因表达的关键RNA家族。包括lncRNA在内的调控RNA通过与RNA、DNA和蛋白质相互作用来调节基因表达。已经开发了几个数据库和计算工具来探索lncRNA在细胞生理学中的功能。本章讨论了可用于lncRNA功能分析的工具,并提供了lncRNA计算分析的详细工作流程。