Mahendran Ashwin, Orlando Benjamin J
Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI, United States.
Front Microbiol. 2024 Sep 27;15:1469915. doi: 10.3389/fmicb.2024.1469915. eCollection 2024.
ABC transporters are a diverse superfamily of membrane protein complexes that utilize the binding/hydrolysis of ATP to power substrate movement across biological membranes or perform mechanical work. In bacteria, these transporters play essential roles in biochemical processes ranging from nutrient uptake and protein secretion to antibiotic resistance and cell-wall remodeling. Analysis of the complete genome sequence of the Gram-positive organism has previously revealed that ABC transporters comprise the largest family of proteins across the entire genome. Despite the widespread presence of these transporters in , relatively few experimental structures of ABC transporters from this organism have been determined. Here we leverage the power of AlphaFold-Multimer to predict the 3-dimensional structure of all potential ABC transporter complexes that have been identified from bioinformatic analysis of the genome. We further classify the ABC transporters into discrete classes based on their predicted architecture and the presence or absence of distinct protein domains. The 3-dimensional structure predictions presented here serve as a template to understand the structural and functional diversity of ABC transporter systems in and illuminate areas in which further experimental structural validation is warranted.
ABC转运蛋白是一类多样的膜蛋白复合体超家族,它们利用ATP的结合/水解为底物跨生物膜的移动提供动力,或执行机械工作。在细菌中,这些转运蛋白在从营养物质摄取、蛋白质分泌到抗生素抗性和细胞壁重塑等一系列生化过程中发挥着重要作用。此前对革兰氏阳性菌完整基因组序列的分析表明,ABC转运蛋白是整个基因组中最大的蛋白质家族。尽管这些转运蛋白在该菌中广泛存在,但来自该菌的ABC转运蛋白的实验结构相对较少被确定。在此,我们利用AlphaFold-Multimer的能力来预测从该菌基因组的生物信息学分析中鉴定出的所有潜在ABC转运蛋白复合体的三维结构。我们还根据预测的结构以及不同蛋白质结构域的存在与否,将ABC转运蛋白分为不同的类别。这里呈现的三维结构预测结果可作为理解该菌中ABC转运蛋白系统结构和功能多样性的模板,并阐明需要进一步进行实验结构验证的领域。