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出口蛋白 Cse1p 和 Xpot 的弹性网络模型描绘的灵活性。

Flexibility of the exportins Cse1p and Xpot depicted by elastic network model.

机构信息

Mechanical and Industrial Engineering, University of Massachusetts, Amherst, MA 01003, USA.

出版信息

J Mol Model. 2011 Jul;17(7):1735-41. doi: 10.1007/s00894-010-0875-5. Epub 2010 Nov 7.

Abstract

Nucleocytoplasmic transport in eukaryotic cells involves many interactions between macromolecules, and has been an active area for many researchers. However, the precise mechanism still evades us and more efforts are needed to better understand it. In this study, the authors investigated exportins (Cse1p and Xpot) by elastic network interpolation (ENI) and elastic network based normal mode analysis (EN-NMA). Results of the study on Cse1p were in good agreement with the results obtained by molecular dynamics simulation in another study but with the benefit of time-efficiency. First, a formation of ring closure obtained by ENI was observed. Second, HEAT 1 to 3 and HEAT 14 to 17 had the largest values of root mean square deviation (RMSD) which indicated the flexibility of Cse1p during the transition. In the case of Xpot, a possible pathway from nuclear state to cytoplasmic state was shown, and the predicted pathway was also quantitatively analyzed in terms of RMSD. The results suggested two flexible regions of Xpot that might be important to the transporting mechanism. Moreover, the dominant mode of Xpot in the nuclear state obtained by EN-NMA not only showed the tendency to match the predicted pathway to the cytoplasmic state of Xpot, but also displayed the flexible regions of Xpot. A time-efficient computational approach was presented in this paper and the results indicated that the flexibility of tested exportins might be required to perform the biological function of transporting cargos.

摘要

真核细胞的核质转运涉及许多大分子之间的相互作用,一直是许多研究人员关注的热点领域。然而,精确的机制仍然难以捉摸,需要更多的努力来更好地理解它。在这项研究中,作者通过弹性网络插值(ENI)和基于弹性网络的正常模式分析(EN-NMA)研究了输出蛋白(Cse1p 和 Xpot)。Cse1p 的研究结果与另一项研究中的分子动力学模拟结果非常吻合,但具有时间效率的优势。首先,观察到通过 ENI 形成的环闭合。其次,HEAT1 到 3 和 HEAT14 到 17 的均方根偏差(RMSD)值最大,这表明 Cse1p 在转变过程中的灵活性。在 Xpot 的情况下,显示了从核态到细胞质态的可能途径,并且还根据 RMSD 对预测途径进行了定量分析。结果表明 Xpot 的两个柔性区域可能对转运机制很重要。此外,通过 EN-NMA 获得的核态下 Xpot 的主导模式不仅显示了与 Xpot 的细胞质态预测途径相匹配的趋势,而且还显示了 Xpot 的柔性区域。本文提出了一种高效的计算方法,结果表明,测试的输出蛋白的灵活性可能是执行运输货物的生物功能所必需的。

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