4.7 Article

Structural and Functional Analyses of Hub MicroRNAs in An Integrated Gene Regulatory Network of Arabidopsis

期刊

GENOMICS PROTEOMICS & BIOINFORMATICS
卷 20, 期 4, 页码 747-764

出版社

ELSEVIER
DOI: 10.1016/j.gpb.2020.02.004

关键词

MicroRNA; Transcription factor; Feed-forward loop; Date hub; MIR858A

资金

  1. National Key R&D Program of China [2017YFA0503800]
  2. National Natural Science Foundation of China [31621001]

向作者/读者索取更多资源

This study reconstructed an integrated miRNA network in Arabidopsis, which includes core transcription factors, miRNAs, and downstream genes. The study found that miRNAs occupy distinct niches and enrich miRNA-containing feed-forward loops in gene regulatory networks. Further analyses revealed how miRNA-containing feed-forward loops coordinate transcription factors in different hierarchical layers and their association with miRNA hubs.
MicroRNAs (miRNAs) are trans-acting small regulatory RNAs that work coordinately with transcription factors (TFs) to shape the repertoire of cellular mRNAs available for translation. Despite our growing knowledge of individual plant miRNAs, their global roles in gene regulatory networks remain mostly unassessed. Based on interactions obtained from public databases and curated from the literature, we reconstructed an integrated miRNA network in Arabidopsis that includes 66 core TFs, 318 miRNAs, and 1712 downstream genes. We found that miRNAs occupy distinct niches and enrich miRNA-containing feed-forward loops (FFLs), particularly those with miRNAs as intermediate nodes. Further analyses revealed that miRNA-containing FFLs coordinate TFs located in different hierarchical layers and that intertwined miRNA-containing FFLs are associated with party and date miRNA hubs. Using the date hub MIR858A as an example, we performed detailed molecular and genetic analyses of three interconnected miRNA-containing FFLs. These analyses revealed individual functions of the selected miRNA-containing FFLs and elucidated how the date hub miRNA fulfills multiple regulatory roles. Collectively, our findings highlight the prevalence and importance of miRNA-containing FFLs, and provide new insights into the design principles and control logics of miRNA regulatory networks governing gene expression programs in plants.

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