Bhandari Dipendra, Adepu Kiran Kumar, Anishkin Andriy, Kay Colin D, Young Erin E, Baumbauer Kyle M, Ghosh Anuradha, Chintapalli Sree V
Arkansas Children's Nutrition Center, Little Rock, AR 72202, USA.
Department of Pediatrics, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.
Metabolites. 2024 Aug 3;14(8):430. doi: 10.3390/metabo14080430.
Metabolomics, the study of small-molecule metabolites within biological systems, has become a potent instrument for understanding cellular processes. Despite its profound insights into health, disease, and drug development, identifying the protein partners for metabolites, especially dietary phytochemicals, remains challenging. In the present study, we introduced an innovative in silico, structure-based target prediction approach to efficiently predict protein targets for metabolites. We analyzed 27 blood serum metabolites from nutrition intervention studies' blueberry-rich diets, known for their health benefits, yet with elusive mechanisms of action. Our findings reveal that blueberry-derived metabolites predominantly interact with Carbonic Anhydrase (CA) family proteins, which are crucial in acid-base regulation, respiration, fluid balance, bone metabolism, neurotransmission, and specific aspects of cellular metabolism. Molecular docking showed that these metabolites bind to a common pocket on CA proteins, with binding energies ranging from -5.0 kcal/mol to -9.0 kcal/mol. Further molecular dynamics (MD) simulations confirmed the stable binding of metabolites near the Zn binding site, consistent with known compound interactions. These results highlight the potential health benefits of blueberry metabolites through interaction with CA proteins.
代谢组学是对生物系统内小分子代谢物的研究,已成为理解细胞过程的有力工具。尽管它对健康、疾病和药物开发有深刻见解,但确定代谢物,尤其是膳食植物化学物质的蛋白质伙伴仍然具有挑战性。在本研究中,我们引入了一种创新的基于结构的计算机模拟靶点预测方法,以有效预测代谢物的蛋白质靶点。我们分析了营养干预研究中富含蓝莓饮食的27种血清代谢物,这些饮食以其健康益处而闻名,但其作用机制尚不清楚。我们的研究结果表明,蓝莓衍生的代谢物主要与碳酸酐酶(CA)家族蛋白相互作用,这些蛋白在酸碱调节、呼吸、体液平衡、骨代谢、神经传递和细胞代谢的特定方面起着关键作用。分子对接显示,这些代谢物与CA蛋白上的一个共同口袋结合,结合能范围为-5.0千卡/摩尔至-9.0千卡/摩尔。进一步的分子动力学(MD)模拟证实了代谢物在锌结合位点附近的稳定结合,这与已知的化合物相互作用一致。这些结果突出了蓝莓代谢物通过与CA蛋白相互作用而产生的潜在健康益处。