Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin 300308, P. R. China.
University of Chinese Academy of Sciences, Beijing 100864, P. R. China.
Bioinformatics. 2021 Apr 20;37(3):434-435. doi: 10.1093/bioinformatics/btaa685.
Rapid advances in sequencing technology have resulted huge increases in the accessibility of sequencing data. Moreover, researchers are focusing more on organisms that lack a reference genome. However, few easy-to-use web servers focusing on annotations of enzymatic functions are available. Accordingly, in this study, we describe Transcriptor, a novel platform for annotating transcripts encoding enzymes.
The transcripts were evaluated using more than 300 000 in-house enzymatic reactions through bridges of Enzyme Commission numbers. Transcriptor also enabled ontology term identification and along with associated enzymes, visualization and prediction of domains and annotation of regulatory structure, such as long noncoding RNAs, which could facilitate the discovery of new functions in model or nonmodel species. Transcriptor may have applications in elucidation of the roles of organs transcriptomes and secondary metabolite biosynthesis in organisms lacking a reference genome.
Transcriptor is available at http://design.rxnfinder.org/transcriptor/.
Supplementary data are available at Bioinformatics online.
测序技术的快速发展使得测序数据的可及性大大增加。此外,研究人员越来越关注缺乏参考基因组的生物。然而,很少有易于使用的专注于酶功能注释的网络服务器。因此,在本研究中,我们描述了 Transcriptor,这是一个用于注释编码酶的转录本的新型平台。
通过酶编号的桥梁,使用超过 30 万条内部酶反应对转录本进行了评估。Transcriptor 还能够识别本体论术语,并与相关酶一起,可视化和预测结构域,并注释调节结构,如长非编码 RNA,这有助于在缺乏参考基因组的模型或非模型物种中发现新功能。Transcriptor 可应用于阐明缺乏参考基因组的生物的器官转录组和次生代谢物生物合成的作用。
Transcriptor 可在 http://design.rxnfinder.org/transcriptor/ 上获得。
补充数据可在 Bioinformatics 在线获得。