Center for Computational Natural Sciences and Bioinformatics, International Institute of Information Technology, Gachibowli, Hyderabad, Telangana 500032, India.
Gene. 2022 Aug 30;837:146694. doi: 10.1016/j.gene.2022.146694. Epub 2022 Jun 20.
RNAs are the major regulators of gene expression, and their secondary structures play crucial roles at different levels. RiboSNitches are disease-associated SNPs that cause changes in the pre-mRNA secondary structural ensemble. Several riboSNitches have been detected in the 5' and 3' untranslated regions and lncRNA. Although cases of secondary structural elements playing a regulatory role in alternative splicing are known, regions specific to splicing events, such as splice junctions have not received much attention. We tested splice-site mutations for their efficiency in disrupting the secondary structure and hypothesized that these could play a crucial role in alternative splicing. Multiple riboSNitch prediction methods were applied to obtain overlapping results that are potentially more reliable. Putative riboSNitches were identified from aberrant 5' and 3' splice site mutations, cancer-causing somatic mutations, and genes that harbor the regulatory RNA secondary structural elements. Our workflow for predicting riboSNitches associated with alternative splicing is novel and paves the way for subsequent experimental validation.
RNAs 是基因表达的主要调控因子,其二级结构在不同层面上起着至关重要的作用。RiboSNitches 是与疾病相关的 SNP,可导致 pre-mRNA 二级结构整体发生变化。已经在 5' 和 3' 非翻译区和 lncRNA 中检测到了多个 RiboSNitches。虽然已知二级结构元件在可变剪接中起调节作用的情况,但特异性剪接事件的区域(如剪接接头)并没有受到太多关注。我们测试了剪接位点突变在破坏二级结构方面的效率,并假设这些突变可能在可变剪接中起关键作用。应用了多种 RiboSNitch 预测方法来获得重叠的结果,这些结果可能更可靠。从异常的 5' 和 3' 剪接位点突变、致癌性体细胞突变以及具有调节 RNA 二级结构元件的基因中鉴定出了推定的 RiboSNitches。我们预测与可变剪接相关的 RiboSNitches 的工作流程是新颖的,为随后的实验验证铺平了道路。