Ivanov Timofei M, Pervouchine Dmitri D
Skolkovo Institute for Science and Technology, Ulitsa Nobelya 3, Moscow 121205, Russia.
Faculty of Bioengineering and Bioinformatics, Moscow State University 1-73, Moscow 119899, Russia.
Genes (Basel). 2018 Jul 17;9(7):356. doi: 10.3390/genes9070356.
Alternative splicing is a commonly-used mechanism of diversifying gene products. Mutually exclusive exons (MXE) represent a particular type of alternative splicing, in which one and only one exon from an array is included in the mature RNA. A number of genes with MXE do so by using a mechanism that depends on RNA structure. Transcripts of these genes contain multiple sites called selector sequences that are all complementary to a regulatory element called the docking site; only one of the competing base pairings can form at a time, which exposes one exon from the cluster to the spliceosome. MXE tend to have similar lengths and sequence content and are believed to originate through tandem genomic duplications. Here, we report that pre-mRNAs of this class of exons have an increased capacity to fold into competing secondary structures. We propose an evolutionary mechanism for the generation of such structures via duplications that affect not only exons, but also their adjacent introns with stem-loop structures. If one of the two arms of a stem-loop is duplicated, it will generate two selector sequences that compete for the same docking site, a pattern that is associated with MXE splicing. A similar partial duplication of two independent stem-loops produces a pattern that is consistent with the so-called bidirectional pairing model. These models explain why tandem exon duplications frequently result in mutually exclusive splicing.
可变剪接是一种常用的使基因产物多样化的机制。互斥外显子(MXE)代表一种特殊类型的可变剪接,其中成熟RNA中仅包含阵列中的一个外显子。许多具有MXE的基因通过依赖RNA结构的机制来实现这一点。这些基因的转录本包含多个称为选择序列的位点,它们都与一个称为对接位点的调控元件互补;一次只能形成一种竞争性碱基配对,这使得簇中的一个外显子暴露于剪接体。MXE往往具有相似的长度和序列内容,并且被认为起源于串联基因组重复。在这里,我们报告这类外显子的前体mRNA具有更高的折叠成竞争性二级结构的能力。我们提出了一种进化机制,通过不仅影响外显子,而且影响具有茎环结构的相邻内含子的重复来产生此类结构。如果茎环的两个臂之一被复制,它将产生两个竞争相同对接位点的选择序列,这种模式与MXE剪接相关。两个独立茎环的类似部分复制产生的模式与所谓的双向配对模型一致。这些模型解释了为什么串联外显子重复经常导致互斥剪接。