Burke James M, Kuny Chad V, Kincaid Rodney P, Sullivan Christopher S
The University of Texas at Austin, Institute for Cellular and Molecular Biology, Center for Synthetic and Systems Biology, Center for Infectious Disease and Dept. Molecular Biosciences, 1 University Station A5000, Austin, TX 78712-0162, United States.
The University of Texas at Austin, Institute for Cellular and Molecular Biology, Center for Synthetic and Systems Biology, Center for Infectious Disease and Dept. Molecular Biosciences, 1 University Station A5000, Austin, TX 78712-0162, United States.
Methods. 2015 Dec;91:57-68. doi: 10.1016/j.ymeth.2015.07.013. Epub 2015 Jul 22.
Many eukaryotes and some viruses encode microRNAs (miRNAs), small RNAs that post-transcriptionally regulate gene expression. While most miRNAs are generated through the activity of RNA Polymerase II (RNAP II) and subsequent processing by Drosha and Dicer, some viral miRNAs utilize alternative pathways of biogenesis. Some members of the herpesvirus and retrovirus families can direct synthesis of miRNAs through RNAP III transcription rather than RNAP II and can utilize atypical enzymes to generate miRNAs. Though the advantages of alternative miRNA biogenesis remain unclear for herpesviruses, the retroviral miRNA biogenesis routes allow the RNAP II transcribed retroviral genome to escape Drosha cleavage while still expressing abundant, biologically-active miRNAs. These RNAP III-derived miRNAs have unique characteristics that allow for their identification and characterization. In this article, we describe procedures to predict, validate, and characterize RNAP III-transcribed miRNAs and other small RNAs, while providing resources that are also useful for canonical miRNAs.
许多真核生物和一些病毒都编码微小RNA(miRNA),即转录后调控基因表达的小RNA。虽然大多数miRNA是通过RNA聚合酶II(RNAP II)的活性以及随后由Drosha和Dicer进行加工而产生的,但一些病毒miRNA利用替代的生物合成途径。疱疹病毒和逆转录病毒家族的一些成员可以通过RNAP III转录来指导miRNA的合成,而不是通过RNAP II,并且可以利用非典型酶来产生miRNA。尽管替代miRNA生物合成对疱疹病毒的优势尚不清楚,但逆转录病毒miRNA生物合成途径使由RNAP II转录的逆转录病毒基因组能够逃避Drosha切割,同时仍能表达丰富的、具有生物活性的miRNA。这些源自RNAP III的miRNA具有独特的特征,便于对其进行鉴定和表征。在本文中,我们描述了预测、验证和表征由RNAP III转录的miRNA和其他小RNA的程序,同时提供了对经典miRNA也有用的资源。