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β-Lactoglobulins Conformational Requirements for Ligand Binding at the Calyx and the Dimer Interphase: a Flexible Docking Study

机译:β-乳球蛋白对花萼和二聚体间期配体结合的构象性要求:灵活的对接研究

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摘要

β-lactoglobulin (BLG) is an abundant milk protein relevant for industry and biotechnology, due significantly to its ability to bind a wide range of polar and apolar ligands. While hydrophobic ligand sites are known, sites for hydrophilic ligands such as the prevalent milk sugar, lactose, remain undetermined. Through the use of molecular docking we first, analyzed the known fatty acid binding sites in order to dissect their atomistic determinants and second, predicted the interaction sites for lactose with monomeric and dimeric BLG. We validated our approach against BLG structures co-crystallized with ligands and report a computational setup with a reduced number of flexible residues that is able to reproduce experimental results with high precision. Blind dockings with and without flexible side chains on BLG showed that: i) 13 experimentally-determined ligands fit the calyx requiring minimal movement of up to 7 residues out of the 23 that constitute this binding site. ii) Lactose does not bind the calyx despite conformational flexibility, but binds the dimer interface and an alternate Site C. iii) Results point to a probable lactolation site in the BLG dimer interface, at K141, consistent with previous biochemical findings. In contrast, no accessible lysines are found near Site C. iv) lactose forms hydrogen bonds with residues from both monomers stabilizing the dimer through a claw-like structure. Overall, these results improve our understanding of BLG's binding sites, importantly narrowing down the calyx residues that control ligand binding. Moreover, our results emphasize the importance of the dimer interface as an insufficiently explored, biologically relevant binding site of particular importance for hydrophilic ligands. Furthermore our analyses suggest that BLG is a robust scaffold for multiple ligand-binding, suitable for protein design, and advance our molecular understanding of its ligand sites to a point that allows manipulation to control binding.
机译:β-乳球蛋白(BLG)是一种与工业和生物技术相关的丰富的乳蛋白,这是因为它具有结合多种极性和非极性配体的能力。尽管疏水性配体位点是已知的,但是亲水性配体例如流行的乳糖,乳糖的位点仍未确定。通过使用分子对接,我们首先分析了已知的脂肪酸结合位点,以解剖其原子决定簇,其次,预测了乳糖与单体和二聚体BLG的相互作用位点。我们针对与配体共结晶的BLG结构验证了我们的方法,并报告了具有减少数量的柔性残基的计算设置,该设置能够再现高精度的实验结果。 BLG上带有和不带有柔性侧链的盲区对接表明:i)13个实验确定的配体适合花萼,要求在构成该结合位点的23个残基中最少移动7个残基。 ii)尽管构象柔韧性,乳糖不结合花萼,但结合二聚体界面和一个替代位点C。iii)结果指向BLG二聚体界面中可能的乳糖醇化位点,位于K141,与先前的生化发现一致。相反,在位点C附近未发现可接近的赖氨酸。iv)乳糖与两个单体的残基通过爪状结构稳定二聚体形成氢键。总体而言,这些结果改善了我们对BLG结合位点的理解,重要的是缩小了控制配体结合的花萼残基。而且,我们的结果强调了二聚体界面的重要性,因为对于亲水性配体而言,二聚体界面的探索不足,生物学相关的结合位点特别重要。此外,我们的分析表明,BLG是用于多种配体结合的坚固支架,适用于蛋白质设计,并且将我们对其配体位点的分子理解提高到可以操纵以控制结合的程度。

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