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L-阿拉伯糖在OmpF孔蛋白中的转位与相互作用:一项分子动力学研究

Translocation and interactions of L-arabinose in OmpF porin: A molecular dynamics study.

作者信息

Malek Kourosh, Maghari Ali

机构信息

Department of Chemistry, Tehran University, Tehran, Iran.

出版信息

Biochem Biophys Res Commun. 2007 Jan 5;352(1):104-10. doi: 10.1016/j.bbrc.2006.10.183. Epub 2006 Nov 10.

Abstract

The passage of a natural substrate, L-arabinose (L-ARA) through Escherichia coli porin embedded in an artificial bilayer, is studied by equilibrium molecular dynamics simulations. We investigate the early stage of translocation process of L-ARA from intra-cellular to extra-cellular side (Int-to-Ext) across the bilayer. The average trajectory path over all L-ARA molecules along with quantum-mechanical configuration-optimizations at PM3 level predict the existence of at least three trapping zones. The common feature within all these zones is that L-ARA remains perpendicular to the channel axis. It is remarkable how the orientation and translational-rotational motion of L-ARA molecule play a role in its transport through OmpF channel. These simulations are important for better understanding of permeation process in OmpF channel. They also provide an insight into the chiral recognition of translocation process in protein nanochannels from substrate and protein prospects and help interpret experiments on permeation process of small dipolar molecules across biological membranes.

摘要

通过平衡分子动力学模拟研究了天然底物L-阿拉伯糖(L-ARA)穿过嵌入人工双层膜的大肠杆菌孔蛋白的过程。我们研究了L-ARA从双层膜的细胞内侧到外侧(Int-to-Ext)转运过程的早期阶段。所有L-ARA分子的平均轨迹路径以及在PM3水平的量子力学构型优化预测至少存在三个捕获区。所有这些区域的共同特征是L-ARA保持垂直于通道轴。L-ARA分子的取向和平动-转动运动在其通过OmpF通道的转运过程中发挥作用,这一点非常显著。这些模拟对于更好地理解OmpF通道中的渗透过程很重要。它们还从底物和蛋白质的角度深入了解了蛋白质纳米通道中转运过程的手性识别,并有助于解释小偶极分子跨生物膜渗透过程的实验。

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