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Binding dynamics and energetic insight into the molecular forces driving nucleotide binding by guanylate kinase

机译:结合动力学和能见度高的分子驱动鸟苷酸激酶结合核苷酸的力

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Plasmodium deoxyguanylate pathways are an attractive area of investigation for future metabolic and drug discovery studies due to their unique substrate specificities. We investigated the energetic contribution to guanylate kinase substrate binding and the forces underlying ligand recognition. In the range from 20 to 35°C, the thermodynamic profiles displayed marked decrease in binding enthalpy, while the free energy of binding showed little changes. GMP produced a large binding heat capacity change of -356 cal mol-1 K-1, indicating considerable conformational changes upon ligand binding. Interestingly, the calculated ΔCp was -32 cal mol -1 K-1, indicating that the accessible surface area is not the central change in substrate binding, and that other entropic forces, including conformational changes, are more predominant. The thermodynamic signature for GMP is inconsistent with rigid-body association, while dGMP showed more or less rigid-body association. These binding profiles explain the poor catalytic efficiency and low affinity for dGMP compared with GMP. At low temperature, the ligands bind to the receptor site under the effect of hydrophobic forces. Interestingly, by increasing the temperature, the entropic forces gradually vanish and proceed to a nonfavorable contribution, and the interaction occurs mainly through bonding, electrostatic forces, and van der Waals interactions.
机译:疟原虫脱氧鸟苷酸途径由于其独特的底物特异性而成为未来代谢和药物发现研究的一个有吸引力的研究领域。我们调查了对鸟苷酸激酶底物结合的能量贡献和潜在的配体识别力。在20至35°C的温度范围内,热力学曲线显示出结合焓显着降低,而结合的自由能几乎没有变化。 GMP产生了-356 cal mol-1 K-1的大结合热容变化,表明配体结合后构象发生了很大变化。有趣的是,计算出的ΔCp为-32 cal mol -1 K-1,表明可及表面积不是底物结合的中心变化,并且其他熵力(包括构象变化)更为主要。 GMP的热力学特征与刚体缔合不一致,而dGMP或多或少显示出刚体缔合。这些结合特征解释了与GMP相比,差的催化效率和对dGMP的低亲和力。在低温下,配体在疏水力的作用下与受体位点结合。有趣的是,通过升高温度,熵力逐渐消失并产生不利的贡献,并且相互作用主要通过键合,静电力和范德华相互作用而发生。

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