Pan Tao, Gao Yueying, Xu Gang, Li Yongsheng
College of Biomedical Information and Engineering, Hainan Medical University, Haikou, China.
Adv Exp Med Biol. 2022;1385:161-186. doi: 10.1007/978-3-031-08356-3_6.
MicroRNAs (miRNAs) play important roles in the physiology and development of cancers. The increase of multidimensional molecular profiles of tumor patients generated by high-throughput sequencing technologies has enabled computational analysis of miRNA regulatory networks in cancer. In this chapter, we first summarized currently widely used computational methods for identifying miRNA-gene interactions. In addition, crosstalk among miRNAs and competitive endogenous RNAs (ceRNAs) represent novel layers of gene regulation mediated by miRNAs, which also play important roles in cancer. We next reviewed computational methods for modeling miRNA-miRNA crosstalk and ceRNA-ceRNA interactions in cancer. These methods integrate multi-omics data and range from genomics to phenomics. MiRNA-miRNA networks are generally constructed based on genomic sequences, transcriptomes, miRNA-gene regulation, and functional pathways. Moreover, five types of computational methods for identifying ceRNA-ceRNA interactions are summarized in this chapter. Among these methods, two types of global ceRNA regulation and three types of context-specific methods are included. The application of these computational methods focused on miRNA regulation in cancer provides valuable functional insights into the underlying mechanism of cancer, as well as future precision medicine.
微小RNA(miRNA)在癌症的生理过程和发展中发挥着重要作用。高通量测序技术所产生的肿瘤患者多维分子图谱的增加,使得对癌症中miRNA调控网络进行计算分析成为可能。在本章中,我们首先总结了目前广泛用于识别miRNA-基因相互作用的计算方法。此外,miRNA与竞争性内源性RNA(ceRNA)之间的相互作用代表了由miRNA介导的基因调控新层面,其在癌症中也发挥着重要作用。接下来,我们回顾了用于构建癌症中miRNA-miRNA相互作用及ceRNA-ceRNA相互作用模型的计算方法。这些方法整合了从基因组学到表型组学的多组学数据。miRNA-miRNA网络通常基于基因组序列、转录组、miRNA-基因调控及功能通路构建。此外,本章总结了五种识别ceRNA-ceRNA相互作用的计算方法。在这些方法中,包括两种类型的全局ceRNA调控方法和三种类型的上下文特异性方法。这些专注于癌症中miRNA调控的计算方法的应用,为癌症潜在机制以及未来的精准医学提供了有价值的功能见解。