Faculty of Life Science & Medicine, Northwest University, No. 229 Taibai North Road, Xi'an 710069, China.
School of Computer Science and Technology, College of Intelligence and Computing, Tianjin University, Tianjin 300350, China.
Nucleic Acids Res. 2022 Jan 11;50(1):e4. doi: 10.1093/nar/gkab877.
Efficient annotation of alterations in binding sequences of molecular regulators can help identify novel candidates for mechanisms study and offer original therapeutic hypotheses. In this work, we developed Somatic Binding Sequence Annotator (SBSA) as a full-capacity online tool to annotate altered binding motifs/sequences, addressing diverse types of genomic variants and molecular regulators. The genomic variants can be somatic mutation, single nucleotide polymorphism, RNA editing, etc. The binding motifs/sequences involve transcription factors (TFs), RNA-binding proteins, miRNA seeds, miRNA-mRNA 3'-UTR binding target, or can be any custom motifs/sequences. Compared to similar tools, SBSA is the first to support miRNA seeds and miRNA-mRNA 3'-UTR binding target, and it unprecedentedly implements a personalized genome approach that accommodates joint adjacent variants. SBSA is empowered to support an indefinite species, including preloaded reference genomes for SARS-Cov-2 and 25 other common organisms. We demonstrated SBSA by annotating multi-omics data from over 30,890 human subjects. Of the millions of somatic binding sequences identified, many are with known severe biological repercussions, such as the somatic mutation in TERT promoter region which causes a gained binding sequence for E26 transformation-specific factor (ETS1). We further validated the function of this TERT mutation using experimental data in cancer cells. Availability:http://innovebioinfo.com/Annotation/SBSA/SBSA.php.
有效的注释分子调节剂结合序列的改变有助于识别新的机制研究候选者,并提供新的治疗假说。在这项工作中,我们开发了 Somatic Binding Sequence Annotator (SBSA) 作为一个全容量的在线工具,用于注释改变的结合基序/序列,解决各种类型的基因组变异和分子调节剂。基因组变异可以是体细胞突变、单核苷酸多态性、RNA 编辑等。结合基序/序列涉及转录因子 (TFs)、RNA 结合蛋白、miRNA 种子、miRNA-mRNA 3'-UTR 结合靶点,或可以是任何自定义基序/序列。与类似的工具相比,SBSA 是第一个支持 miRNA 种子和 miRNA-mRNA 3'-UTR 结合靶点的工具,它前所未有地实现了个性化基因组方法,可容纳联合相邻变异。SBSA 能够支持无限数量的物种,包括 SARS-CoV-2 和 25 种其他常见生物的预加载参考基因组。我们通过注释来自超过 30890 个人类受试者的多组学数据来展示 SBSA。在鉴定的数百万个体细胞结合序列中,有许多与已知的严重生物学影响有关,例如 TERT 启动子区域的体细胞突变导致 E26 转化特异性因子 (ETS1) 的获得结合序列。我们进一步使用癌细胞中的实验数据验证了这种 TERT 突变的功能。可用性:http://innovebioinfo.com/Annotation/SBSA/SBSA.php。