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pKa Determination of Histidine Residues in α-Conotoxin MII Peptides by 1H NMR and Constant pH Molecular Dynamics Simulation

机译:第1H NMR恒定pH分子动力学模拟α-芋螺蛋白MII肽中α-芋螺蛋白MII肽中组氨酸残留的PKA测定

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摘要

α-Conotoxin MII (α-CTxMII) is a potent and selective peptide antagonist of neuronal nicotinic acetylcholine receptors (nAChRs). Studies have shown that His9 and His12 are significant determinants of toxin binding affinity for nAChR, while Glu11 may dictate differential toxin affinity between nAChR isoforms. The protonation state of these histidine residues and therefore the charge on the α-conotoxin may contribute to the observed differences in binding affinity and selectivity. In this study, we assess the pH dependence of the protonation state of His9 and His12 by 1H NMR spectroscopy and constant pH molecular dynamics (CpHMD) in α-CTxMII, α-CTxMII[E11A], and the triple mutant, α-CTxMII[N5R:E11A:H12K]. The E11A mutation does not significantly perturb the pKa of His9 or His12, while N5R:E11A:H12K results in a significant decrease in the pKa value of His9. The pKa values predicted by CpHMD simulations are in good agreement with 1H NMR spectroscopy, with a mean absolute deviation from experiment of 0.3 pKa units. These results support the use of CpHMD as an efficient and inexpensive predictive tool to determine pKa values and structural features of small peptides critical to their function.
机译:α-芋螺毒素MII(α-CTxMII)是神经元烟碱乙酰胆碱受体(nAChRs)的有效且选择性的肽拮抗剂。研究表明,His9和His12是nAChR毒素结合亲和力的重要决定因素,而Glu11可能决定nAChR同工型之间的毒素亲和力差异。这些组氨酸残基的质子化状态以及因此α-芋螺毒素上的电荷可能有助于观察到的结合亲和力和选择性差异。在这项研究中,我们通过 1 H NMR光谱法和恒定pH分子动力学(CpHMD)在α-CTxMII,α-CTxMII[E11A]中评估了His9和His12质子化状态的pH依赖性。三突变体,α-CTxMII[N5R:E11A:H12K]。 E11A突变不会显着干扰His9或His12的pKa,而N5R:E11A:H12K会导致His9的pKa值显着降低。 CpHMD模拟预测的pKa值与 1 1H NMR光谱学非常吻合,与实验的平均绝对偏差为0.3 pKa单位。这些结果支持使用CpHMD作为一种有效且廉价的预测工具,以确定对它们的功能至关重要的小肽的pKa值和结构特征。

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