Functional Gene Annotation, Preclinical and Fundamental Science, UCL Institute of Cardiovascular Science, University College London, London WC1E 6BT, United Kingdom.
Swiss-Prot Group, SIB Swiss Institute of Bioinformatics, 1 Rue Michel-Servet, 1211 Geneve 4, Switzerland.
Biochim Biophys Acta Gene Regul Mech. 2021 Nov-Dec;1864(11-12):194765. doi: 10.1016/j.bbagrm.2021.194765. Epub 2021 Oct 18.
To control gene transcription, DNA-binding transcription factors recognise specific sequence motifs in gene regulatory regions. A complete and reliable GO annotation of all DNA-binding transcription factors is key to investigating the delicate balance of gene regulation in response to environmental and developmental stimuli. The need for such information is demonstrated by the many lists of transcription factors that have been produced over the past decade. The COST Action Gene Regulation Ensemble Effort for the Knowledge Commons (GREEKC) Consortium brought together experts in the field of transcription with the aim of providing high quality and interoperable gene regulatory data. The Gene Ontology (GO) Consortium provides strict definitions for gene product function, including factors that regulate transcription. The collaboration between the GREEKC and GO Consortia has enabled the application of those definitions to produce a new curated catalogue of over 1400 human DNA-binding transcription factors, that can be accessed at https://www.ebi.ac.uk/QuickGO/targetset/dbTF. This catalogue has facilitated an improvement in the GO annotation of human DNA-binding transcription factors and led to the GO annotation of almost sixty thousand DNA-binding transcription factors in over a hundred species. Thus, this work will aid researchers investigating the regulation of transcription in both biomedical and basic science.
为了控制基因转录,DNA 结合转录因子识别基因调控区域中的特定序列基序。对所有 DNA 结合转录因子进行完整且可靠的 GO 注释是研究基因调控对环境和发育刺激的微妙平衡的关键。过去十年中产生的许多转录因子列表证明了这种信息的必要性。COST 行动基因调控合奏努力为知识共同体(GREEKC)联盟汇集了转录领域的专家,旨在提供高质量和可互操作的基因调控数据。基因本体论(GO)联盟为基因产物功能提供了严格的定义,包括调节转录的因子。GREEKC 和 GO 联盟之间的合作使得这些定义可以应用于生成一个新的经过策展的目录,其中包含超过 1400 个人类 DNA 结合转录因子,可以在 https://www.ebi.ac.uk/QuickGO/targetset/dbTF 上访问。该目录促进了人类 DNA 结合转录因子的 GO 注释的改进,并导致了 100 多种物种中近六万种 DNA 结合转录因子的 GO 注释。因此,这项工作将有助于研究生物医学和基础科学中转录调控的研究人员。