Almeida Beatriz C, Wirt Sean A, Prather Kristala L J, Carvalho Alexandra T P
CNC-UC - Center for Neuroscience and Cell Biology, University of Coimbra Portugal
CIBB - Centre for Innovative Biomedicine and Biotechnology, University of Coimbra Portugal.
RSC Med Chem. 2025 Jun 30. doi: 10.1039/d5md00391a.
d-Glucuronate and d-galacturonate can be used by as sole carbon sources. Their use is triggered by external environmental changes through the rearrangement of bacterial metabolic processes. Transcription factors (TFs), the key elements in tailoring gene regulation, enable environmental change responses by transcribing or repressing a gene depending on bacterial needs. Owing to its complexity, allosteric regulation remains a challenging mechanism to fully characterize. Here, the first steps of allosterism behind one TF in hexuronate metabolism in were revealed by combining molecular dynamics (MD) simulations, graph theory, and biosensors. Enhanced MD simulations were used to characterize one of the repressors of hexuronate metabolism, UxuR TF, in its free and ligand-bound forms. The results provided residue selections that were tested . The identified residues can be divided into those that are critical for maintaining protein stability and those that are essential for facilitating allosteric communication from the effector domain to the DNA-binding site. A particularly intriguing discovery was the identification of a variant that could respond to different sugars, enriching our understanding of hexuronate metabolism flexibility. The identification of UxuR variants with altered ligand specificity not only advances our understanding of bacterial metabolism regulation but also opens new avenues for developing antimicrobial strategies targeting hexuronate pathways.
D-葡萄糖醛酸和D-半乳糖醛酸可被用作唯一碳源。它们的利用是由外部环境变化通过细菌代谢过程的重排引发的。转录因子(TFs)是定制基因调控的关键要素,可根据细菌需求通过转录或抑制基因来实现对环境变化的响应。由于其复杂性,变构调节仍然是一种难以完全表征的机制。在此,通过结合分子动力学(MD)模拟、图论和生物传感器,揭示了[具体细菌名称]中己糖醛酸代谢中一种转录因子背后变构作用的最初步骤。增强型MD模拟用于表征己糖醛酸代谢的一种阻遏物UxuR转录因子的游离形式和配体结合形式。[具体细菌名称]的结果提供了经过测试的残基选择。所鉴定的残基可分为对维持蛋白质稳定性至关重要的残基和对促进从效应结构域到DNA结合位点的变构通讯必不可少的残基。一个特别有趣的发现是鉴定出一种能够对不同糖类作出反应的变体,丰富了我们对己糖醛酸代谢灵活性的理解。鉴定出具有改变的配体特异性的UxuR变体不仅推进了我们对细菌代谢调控的理解,也为开发针对己糖醛酸途径的抗菌策略开辟了新途径。