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Molecular dynamics study of the energetic mechanistic and structural implications of a closed phosphate tube in ncd.

机译:分子动力学研究了ncd中封闭磷酸盐管的能量机理和结构含义。

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摘要

The switch 1 region of myosin forms a lid over the nucleotide phosphates as part of a structure known as the phosphate-tube. The homologous region in kinesin-family motors is more open, not interacting with the nucleotide. We used molecular dynamics (MD) simulations to examine a possible displacement of switch 1 of the microtubule motor, ncd, from the open conformation to the closed conformation seen in myosin. MD simulations were done of both the open and the closed conformations, with either MgADP or MgATP at the active site. All MD structures were stable at 300 K for 500 ps, implying that the open and closed conformers all represented local minima on a global free energy surface. Free energy calculations indicated that the open structure was energetically favored with MgADP at the active site, suggesting why only the open structure has been captured in crystallographic work. With MgATP, the closed and open structures had roughly equal energies. Simulated annealing MD showed the transformation from the closed phosphate-tube ncd structure to an open configuration. The MD simulations also showed that the coordination of switch 1 to the nucleotide dramatically affected the position of both the bound nucleotide and switch 2 and that a closed phosphate-tube may be necessary for catalysis.
机译:肌球蛋白的开关1区域在核苷酸磷酸酯上形成一个盖,作为称为磷酸盐管的结构的一部分。驱动蛋白家族马达中的同源区域更开放,不与核苷酸相互作用。我们使用分子动力学(MD)模拟来检查微管马达ncd的开关1从肌球蛋白中看到的打开构型到闭合构型的可能位移。 MD模拟是在活性位点使用MgADP或MgATP对开放和封闭构象进行的。所有MD结构都在300 K下稳定了500 ps,这表明开放和封闭的构象异构体均代表了全球自由能表面上的局部最小值。自由能计算表明,活性位点上的MgADP在能量上有利于开放结构,这说明了为什么在晶体学研究中只捕获了开放结构。使用MgATP时,封闭和开放结构的能量大致相等。模拟退火MD显示了从封闭的磷酸盐管ncd结构到开放结构的转变。 MD模拟还显示,开关1与核苷酸的配位作用显着影响结合的核苷酸和开关2的位置,并且封闭的磷酸盐管对于催化可能是必需的。

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