Nji Nde Aboringong E, M Dikandé Alain
Laboratory of Research on Advanced Materials and Nonlinear Sciences (LaRAMaNS), Department of Physics, Faculty of Science, University of Buea, P.O. Box 63, Buea, Cameroon.
Eur Phys J E Soft Matter. 2018 Mar 21;41(3):35. doi: 10.1140/epje/i2018-11640-9.
The amide-I [Formula: see text] -helix protein is a long molecular chain made up of regularly spaced peptide groups interacting via C=O bonds. According to the current theory the energy released by hydrolyzed adenosine triphosphate is carried across the protein via vibration modes, caused by C=O bond stretchings which, in the presence of anharmonic molecular vibrations, can promote nonlinear localized excitations called excitons. In this work the effects of long-range interactions between amide-I molecules on the modulational instability of small-amplitude excitons, and on characteristic parameters of soliton wavetrain-type excitons, are investigated with emphasis on long-range interactions saturating at finite intermolecular interaction ranges. It is found that long-range interactions strongly affect the dispersion of vibration modes of the protein chain, causing a narrowing of the modulational-instability regions for small-amplitude excitons. Characteristic parameters of the exciton soliton wavetrain, including its velocity, tail and average width (i.e., the exciton width at half tail), are drastically enhanced with respect to their values when only the short-range interaction is considered. The results suggest a sizable increase of the energy carried by excitons along the protein chain above predictions based on short-range considerations.
酰胺-I [化学式:见原文] -螺旋蛋白是一种长分子链,由通过C=O键相互作用的规则间隔的肽基团组成。根据当前理论,水解三磷酸腺苷释放的能量通过振动模式在蛋白质中传递,这种振动模式由C=O键的拉伸引起,在非谐分子振动存在的情况下,可促进称为激子的非线性局域激发。在这项工作中,研究了酰胺-I分子之间的长程相互作用对小振幅激子调制不稳定性以及孤子波列型激子特征参数的影响,重点关注在有限分子间相互作用范围内饱和的长程相互作用。研究发现,长程相互作用强烈影响蛋白质链振动模式的色散,导致小振幅激子的调制不稳定性区域变窄。与仅考虑短程相互作用时相比,激子孤子波列的特征参数,包括其速度、尾部和平均宽度(即尾部一半处的激子宽度)大幅增强。结果表明,激子沿蛋白质链携带的能量比基于短程考虑的预测有显著增加。