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Assignment of side-chain conformation using adiabatic energy mapping free energy perturbation and molecular dynamic simulations.

机译:使用绝热能图自由能扰动和分子动力学模拟分配侧链构象。

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摘要

NMR spectroscopic analysis of the C-terminal Kunitz domain fragment (alpha3(VI)) from the human alpha3-chain of type VI collagen has revealed that the side chain of Trp21 exists in two unequally populated conformations. The major conformation (M) is identical to the conformation observed in the X-ray crystallographic structure, while the minor conformation (m) cannot structurally be resolved in detail by NMR due to insufficient NOE data. In the present study, we have applied: (1) rigid and adiabatic mapping, (2) free energy simulations, and (3) molecular dynamic simulations to elucidate the structure of the m conformer and to provide a possible pathway of the Trp21 side chain between the two conformers. Adiabatic energy mapping of conformations of the Trp21 side chain obtained by energy minimization identified two energy minima: One corresponding to the conformation of Trp21 observed in the X-ray crystallographic structure and solution structure of alpha3(VI) (the M conformation) and the second corresponding to the m conformation predicted by NMR spectroscopy. A transition pathway between the M and m conformation is suggested. The free-energy difference between the two conformers obtained by the thermodynamic integration method is calculated to 1.77+/-0.7 kcal/mol in favor of the M form, which is in good agreement with NMR results. Structural and dynamic properties of the major and minor conformers of the alpha3(VI) molecule were investigated by molecular dynamic. Essential dynamics analysis of the two resulting 800 ps trajectories reveals that when going from the M to the m conformation only small, localized changes in the protein structure are induced. However, notable differences are observed in the mobility of the binding loop (residues Thr13-Ile18), which is more flexible in the m conformation than in the M conformation. This suggests that the reorientation of Trp2 might influence the inhibitory activity against trypsin, despite the relative large distance between the binding loop and Trp21.
机译:NMR光谱分析了VI型胶原蛋白的人alpha3链的C端Kunitz域片段(alpha3(VI)),发现Trp21的侧链存在于两个分布不均的构象中。主要构象(M)与在X射线晶体学结构中观察到的构象相同,而次要构象(m)由于NOE数据不足而不能通过NMR在结构上详细解析。在本研究中,我们已应用:(1)刚性和绝热映射,(2)自由能模拟和(3)分子动力学模拟来阐明m构象异构体的结构并提供Trp21侧链的可能途径在两个构象体之间。通过能量最小化获得的Trp21侧链构象的绝热能量图谱确定了两个能量最小值:一个对应于在α3(VI)的X射线晶体学和溶液结构中观察到的Trp21构象(M构象),第二个对应于由NMR光谱预测的m构象。提出了M和m构象之间的过渡途径。通过热力学积分方法获得的两个构象异构体之间的自由能差经计算为1.77 +/- 0.7 kcal / mol,有利于M形式,这与NMR结果非常吻合。通过分子动力学研究了alpha3(VI)分子的主要和次要构象的结构和动力学性质。对两个所得的800 ps轨迹的基本动力学分析表明,当从M构象变为m构象时,仅诱导了蛋白质结构的局部小变化。然而,在结合环(残基Thr13-Ile18)的迁移率中观察到显着差异,其在m构象中比在M构象中更灵活。这表明,尽管结合环和Trp21之间的距离相对较大,但Trp2的重新定向可能会影响针对胰蛋白酶的抑制活性。

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