Scirè Andrea, Marabotti Anna, Staiano Maria, Iozzino Luisa, Luchansky Matthew S, Der Bryan S, Dattelbaum Jonathan D, Tanfani Fabio, D'Auria Sabato
Department of Biochemistry, Biology, and Genetics, Università Politecnica delle Marche, Ancona, Italy.
Mol Biosyst. 2010 Apr;6(4):687-98. doi: 10.1039/b922092e. Epub 2010 Feb 22.
ABC transport systems provide selective passage of metabolites across cell membranes and typically require the presence of a soluble binding protein with high specificity to a specific ligand. In addition to their primary role in nutrient gathering, the binding proteins associated with bacterial transport systems have been studied for their potential to serve as design scaffolds for the development of fluorescent protein biosensors. In this work, we used Fourier transform infrared spectroscopy and molecular dynamics simulations to investigate the physicochemical properties of a hyperthermophilic binding protein from Thermotoga maritima. We demonstrated preferential binding for the polar amino acid arginine and experimentally monitored the significant stabilization achieved upon binding of ligand to protein. The effect of temperature, pH, and detergent was also studied to provide a more complete picture of the protein dynamics. A protein structure model was obtained and molecular dynamic experiments were performed to investigate and couple the spectroscopic observations with specific secondary structural elements. The data determined the presence of a buried beta-sheet providing significant stability to the protein under all conditions investigated. The specific amino acid residues responsible for arginine binding were also identified. Our data on dynamics and stability will contribute to our understanding of bacterial binding protein family members and their potential biotechnological applications.
ABC转运系统能使代谢物选择性地穿过细胞膜,通常需要一种对特定配体具有高特异性的可溶性结合蛋白。除了在营养物质摄取方面的主要作用外,与细菌转运系统相关的结合蛋白因其作为荧光蛋白生物传感器开发的设计支架的潜力而受到研究。在这项工作中,我们使用傅里叶变换红外光谱和分子动力学模拟来研究来自嗜热栖热菌的嗜热结合蛋白的物理化学性质。我们证明了该蛋白对极性氨基酸精氨酸具有优先结合作用,并通过实验监测了配体与蛋白结合后所实现的显著稳定性。我们还研究了温度、pH值和去污剂的影响,以更全面地了解蛋白质动力学。获得了蛋白质结构模型,并进行了分子动力学实验,以研究光谱观察结果并将其与特定的二级结构元件联系起来。数据确定了存在一个埋藏的β-折叠,在所有研究条件下都为蛋白质提供了显著的稳定性。还鉴定了负责精氨酸结合的特定氨基酸残基。我们关于动力学和稳定性的数据将有助于我们理解细菌结合蛋白家族成员及其潜在的生物技术应用。