Amani Keaun, Shivnauth Vanessa, Castroverde Christian Danve M
Department of Biology Wilfrid Laurier University Waterloo Ontario Canada.
Plant Direct. 2023 Jul 9;7(7):e509. doi: 10.1002/pld3.509. eCollection 2023 Jul.
Molecular genetic analyses in the model species have demonstrated the major roles of different CALMODULIN-BINDING PROTEIN 60 (CBP60) proteins in growth, stress signaling, and immune responses. Prominently, CBP60g and SARD1 are paralogous CBP60 transcription factors that regulate numerous components of the immune system, such as cell surface and intracellular immune receptors, MAP kinases, WRKY transcription factors, and biosynthetic enzymes for immunity-activating metabolites salicylic acid (SA) and -hydroxypipecolic acid (NHP). However, their function, regulation, and diversification in most species remain unclear. Here, we have created CBP60-DB (https://cbp60db.wlu.ca/), a structural and bioinformatic database that comprehensively characterized 1052 gene homologs (encoding 2376 unique transcripts and 1996 unique proteins) across 62 phylogenetically diverse genomes in the plant kingdom. We have employed deep learning-predicted structural analyses using AlphaFold2 and then generated dedicated web pages for all plant CBP60 proteins. Importantly, we have generated a novel clustering visualization algorithm to interrogate kingdom-wide structural similarities for more efficient inference of conserved functions across various plant taxa. Because well-characterized CBP60 proteins in Arabidopsis are known to be transcription factors with putative calmodulin-binding domains, we have integrated external bioinformatic resources to analyze protein domains and motifs. Collectively, we present a plant kingdom-wide identification of this important protein family in a user-friendly AlphaFold-anchored database, representing a novel and significant resource for the broader plant biology community.
对模式物种的分子遗传学分析表明,不同的钙调蛋白结合蛋白60(CBP60)在生长、胁迫信号传导和免疫反应中起主要作用。值得注意的是,CBP60g和SARD1是同源的CBP60转录因子,它们调节免疫系统的许多组成部分,如细胞表面和细胞内免疫受体、丝裂原活化蛋白激酶(MAP激酶)、WRKY转录因子以及免疫激活代谢物水杨酸(SA)和N-羟基哌啶酸(NHP)的生物合成酶。然而,它们在大多数物种中的功能、调控和多样化仍不清楚。在这里,我们创建了CBP60-DB(https://cbp60db.wlu.ca/),这是一个结构和生物信息数据库,全面表征了植物界62个系统发育不同基因组中的1052个基因同源物(编码2376个独特转录本和1996个独特蛋白质)。我们使用AlphaFold2进行深度学习预测的结构分析,然后为所有植物CBP60蛋白生成专用网页。重要的是,我们生成了一种新颖的聚类可视化算法,以探究全植物界的结构相似性,从而更有效地推断不同植物类群中的保守功能。由于已知拟南芥中特征明确的CBP60蛋白是具有假定钙调蛋白结合结构域的转录因子,我们整合了外部生物信息资源来分析蛋白质结构域和基序。我们共同展示了在一个用户友好的以AlphaFold为基础的数据库中对植物界这一重要蛋白家族的鉴定,为更广泛的植物生物学界提供了一种新颖且重要的资源。