首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Envisioning the loop movements and rotation of the two subdomains of dihydrofolate reductase by elastic normal mode analysis.
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Envisioning the loop movements and rotation of the two subdomains of dihydrofolate reductase by elastic normal mode analysis.

机译:通过弹性正常模式分析,设想了二氢叶酸还原酶两个亚域的循环运动和旋转。

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摘要

Normal mode analysis, using the elastic network model, has been employed to envision the low frequency normal mode motion trends in the structures of five intermediates and a transition state in the kinetic pathway of E. coli dihydrofolate reductase (DHFR). Five of the reaction pathway analog structures and a crystal structure resembling the transition state, using X-ray analyses determined by Kraut et al., have been adapted as structural models. The motions that poise pathways of the M20 loop transitions from closed to occluded conformations and sub domain rotation to close the substrate cleft, have been predicted and envisioned for the first time by this study. Pathway entries to the movement of the substrate binding cleft helices are also envisioned. These motions play roles in transition structure stabilization and in regulating the release of the product tetrahydrofolate (THF). The motions observed push the ground state conformation of each intermediate towards a higher energy sub state conformation. A set of conserved residues involved in the catalytic reactions and conformational changes, previously studied by kinetic, theoretical and NMR, have been analyzed. The importance of these motions in terms of protein dynamics are revealed and envisioned by the normal mode analysis. Additional residues are proposed as candidates for further study of their potential promotional function.
机译:使用弹性网络模型进行的正常模式分析已被用于设想五个二氢叶酸还原酶(DHFR)动力学路径中五个中间体的结构和过渡状态的低频正常模式运动趋势。使用Kraut等人确定的X射线分析,已将类似于过渡态的五个反应途径类似物结构和晶体结构用作结构模型。这项研究首次对M20回路的平衡路径从闭合构象转变为闭合构象,并通过亚域旋转以闭合底物裂隙的运动进行了预测。还设想到了底物结合裂隙螺旋运动的途径入口。这些运动在过渡结构稳定和调节产物四氢叶酸(THF)的释放中起作用。观察到的运动将每个中间体的基态构象推向更高能量的子态构象。已分析了一组保守的残基,这些残基涉及催化反应和构象变化,之前已通过动力学,理论和NMR对其进行了研究。这些运动在蛋白质动力学方面的重要性已通过正常模式分析得到揭示和设想。提出了其他残基作为进一步研究其潜在促进功能的候选物。

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