Hawkes Emily J, Hennelly Scott P, Novikova Irina V, Irwin Judith A, Dean Caroline, Sanbonmatsu Karissa Y
John Innes Centre, Norwich Research Park, Norwich NR4 7UH, UK.
Los Alamos National Laboratory, Los Alamos, NM 87545, USA; New Mexico Consortium, Los Alamos, NM 87544, USA.
Cell Rep. 2016 Sep 20;16(12):3087-3096. doi: 10.1016/j.celrep.2016.08.045.
There is considerable debate about the functionality of long non-coding RNAs (lncRNAs). Lack of sequence conservation has been used to argue against functional relevance. We investigated antisense lncRNAs, called COOLAIR, at the A. thaliana FLC locus and experimentally determined their secondary structure. The major COOLAIR variants are highly structured, organized by exon. The distally polyadenylated transcript has a complex multi-domain structure, altered by a single non-coding SNP defining a functionally distinct A. thaliana FLC haplotype. The A. thaliana COOLAIR secondary structure was used to predict COOLAIR exons in evolutionarily divergent Brassicaceae species. These predictions were validated through chemical probing and cloning. Despite the relatively low nucleotide sequence identity, the structures, including multi-helix junctions, show remarkable evolutionary conservation. In a number of places, the structure is conserved through covariation of a non-contiguous DNA sequence. This structural conservation supports a functional role for COOLAIR transcripts rather than, or in addition to, antisense transcription.
关于长链非编码RNA(lncRNA)的功能存在大量争论。缺乏序列保守性曾被用来反驳其功能相关性。我们研究了拟南芥FLC基因座上一种名为COOLAIR的反义lncRNA,并通过实验确定了它们的二级结构。主要的COOLAIR变体具有高度结构化,由外显子组织而成。远端多聚腺苷酸化的转录本具有复杂的多结构域结构,由一个定义功能不同的拟南芥FLC单倍型的非编码单核苷酸多态性改变。拟南芥COOLAIR的二级结构被用于预测进化上不同的十字花科物种中的COOLAIR外显子。这些预测通过化学探针和克隆得到了验证。尽管核苷酸序列同一性相对较低,但包括多螺旋连接在内的结构显示出显著的进化保守性。在许多地方,结构通过非连续DNA序列的共变得以保守。这种结构保守性支持了COOLAIR转录本的功能作用,而非仅仅是反义转录,或者是除反义转录之外的功能作用。