Affiliated Brain Hospital of Guangzhou Medical University, 36 Mingxin Rd, Guangzhou, 510370, China.
Guangzhou Huiai Hospital, 36 Mingxin Rd, Guangzhou, 510370, China.
Database (Oxford). 2020 Jan 1;2020. doi: 10.1093/database/baaa021.
Ferroptosis is a mode of regulated cell death that depends on iron. Cells die from the toxic accumulation of lipid reactive oxygen species. Ferroptosis is tightly linked to a variety of human diseases, such as cancers and degenerative diseases. The ferroptotic process is complicated and consists of a wide range of metabolites and biomolecules. Although great progress has been achieved, the mechanism of ferroptosis remains enigmatic. We have currently entered an era of extensive knowledge advancement, and thus, it is important to find ways to organize and utilize data efficiently. We have observed a high-quality knowledge base of ferroptosis research is lacking. In this study, we downloaded 784 ferroptosis articles from the PubMed database. Ferroptosis regulators and markers and associated diseases were extracted from these articles and annotated. In summary, 253 regulators (including 108 drivers, 69 suppressors, 35 inducers and 41 inhibitors), 111 markers and 95 ferroptosis-disease associations were found. We then developed FerrDb, the first manually curated database for regulators and markers of ferroptosis and ferroptosis-disease associations. The database has a user-friendly interface, and it will be updated every 6 months to offer long-term service. FerrDb is expected to help researchers acquire insights into ferroptosis. Database URL: http://www.zhounan.org/ferrdb.
铁死亡是一种依赖于铁的调节性细胞死亡模式。细胞死于脂质活性氧的毒性积累。铁死亡与多种人类疾病密切相关,如癌症和退行性疾病。铁死亡过程很复杂,涉及广泛的代谢物和生物分子。尽管已经取得了很大的进展,但铁死亡的机制仍然神秘莫测。我们目前已经进入了一个广泛知识进步的时代,因此,找到有效组织和利用数据的方法非常重要。我们已经观察到,缺乏高质量的铁死亡研究知识库。在这项研究中,我们从 PubMed 数据库中下载了 784 篇铁死亡相关文章。从这些文章中提取并注释了铁死亡调节剂和标志物以及相关疾病。总之,发现了 253 个调节剂(包括 108 个驱动子、69 个抑制子、35 个诱导子和 41 个抑制剂)、111 个标志物和 95 个铁死亡-疾病关联。然后,我们开发了 FerrDb,这是第一个用于铁死亡调节剂和标志物以及铁死亡-疾病关联的手动 curated 数据库。该数据库具有用户友好的界面,并且每 6 个月更新一次,以提供长期服务。FerrDb 有望帮助研究人员深入了解铁死亡。数据库网址:http://www.zhounan.org/ferrdb。