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Redesign of LAOBP to bind novel l l ‐amino acid ligands

机译:重新设计老挝染色新型L L L-amino acid配体

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Abstract Computational protein design is still a challenge for advancing structure‐function relationships. While recent advances in this field are promising, more information for genuine predictions is needed. Here, we discuss different approaches applied to install novel glutamine (Gln) binding into the Lysine/Arginine/Ornithine binding protein (LAOBP) from Salmonella typhimurium . We studied the ligand binding behavior of two mutants: a binding pocket grafting design based on a structural superposition of LAOBP to the Gln binding protein QBP from Escherichia coli and a design based on statistical coupled positions. The latter showed the ability to bind Gln even though the protein was not very stable. Comparison of both approaches highlighted a nonconservative shared point mutation between LAOBP_graft and LAOBP_sca. This context dependent L117K mutation in LAOBP turned out to be sufficient for introducing Gln binding, as confirmed by different experimental techniques. Moreover, the crystal structure of LAOBP_L117K in complex with its ligand is reported.
机译:摘要计算蛋白质设计对于推进结构功能关系仍然是一项挑战。虽然该领域的最近进步是有希望的,但需要更多的真正预测信息。在此,我们讨论应用于从沙门氏菌培苏尿的赖氨酸/精氨酸/鸟氨酸结合蛋白(LAOOBP)中安装新的谷氨酰胺(GLN)的不同方法。我们研究了两个突变体的配体结合行为:基于老挝结构叠加的基于大肠杆菌和基于统计耦合位置的设计的Gln结合蛋白质QBP的结合口袋移植设计。后者表明即使蛋白质不是很稳定的蛋白质,即使蛋白质也是如此。两种方法的比较突出了LAOBP_GROFT和LAOBP_SCA之间的非任务共享点突变。这种上下文依赖于老挝的L117K突变原始用于引入Gln结合,如通过不同的实验技术所确认的。此外,报道了Laobp_1117k与其配体复合物的晶体结构。

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