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Folding of Gas-Phase Polyalanines in a Static Electric Field: Alignment Deformations and Polarization Effects

机译:气相聚丙氨酸在静电场中的折叠:排列变形和极化效应

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摘要

Monte Carlo simulations of the temperature-induced unfolding of small gas-phase polyalanines in a static, homogeneous electric field are reported, based on the AMBER ff96 force field. The peptides exhibit a structural transition from the native α-helix state to entropically favored β-sheet conformations, before eventually turning to extended coil at higher temperatures. Upon switching the electric field, the molecules undergo preferential alignment of their dipole moment vector toward the field axis and a shift of the α-β transition to higher temperatures. At higher field strengths (>108 V/m) the molecules stretch and the α-β and β-coil transitions merge. A simple three-state model is shown to account for the observed behavior. Under even higher fields, density functional theory calculations and a polarizable force field both show that electronic rearrangements tend to further increase the dipole moment, polarization effects being approximately half in magnitude with respect to stretching effect. Finally a tentative (temperature, field-strength) phase diagram is sketched.
机译:基于AMBER ff96力场,报道了在静态,均匀电场中温度诱导的小型气相聚丙氨酸解折叠的Monte Carlo模拟。在最终在较高温度下转变成延伸的螺旋之前,这些肽表现出从天然α-螺旋状态到熵有利的β-折叠构象的结构转变。切换电场后,分子的偶极矩矢量朝向场轴进行优先排列,并且α-β跃迁到更高的温度。在较高的场强(> 10 8 V / m)下,分子拉伸,并且α-β和β-线圈过渡合并。显示了一个简单的三态模型来说明观察到的行为。在更高的场下,密度泛函理论计算和极化力场都表明,电子重排趋向于进一步增加偶极矩,极化效应相对于拉伸效应大约为一半。最后,绘制了一个暂定的(温度,场强)相图。

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