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The LBFGS quasi-Newtonian method for molecular modeling prion AGAAAAGA amyloid fibrils

机译:LBFGS拟牛顿分子建模modeling病毒AGAAAAGA淀粉样原纤维的方法

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Experimental X-ray crystallography, NMR (Nuclear Magnetic Resonance) spectroscopy, dual polarization interferometry, etc. are indeed very powerful tools to determine the 3-Dimensional structure of a protein (including the membrane protein); theoretical mathematical and physical computational approaches can also allow us to obtain a description of the protein 3D structure at a submicroscopic level for some unstable, noncrystalline and insoluble proteins. X-ray crystallography finds the X-ray final structure of a protein, which usually need refinements using theoretical protocols in order to produce a better structure. This means theoretical methods are also important in determinations of protein structures. Optimization is always needed in the computer-aided drug design, structure-based drug design, molecular dynamics, and quantum and molecular mechanics. This paper introduces some optimization algorithms used in these research fields and presents a new theoretical computational method—an improved LBFGS Quasi-Newtonian mathematical optimization method—to produce 3D structures of prion AGAAAAGA amyloid fibrils (which are unstable, noncrystalline and insoluble), from the potential energy minimization point of view. Because the NMR or X-ray structure of the hydrophobic region AGAAAAGA of prion proteins has not yet been determined, the model constructed by this paper can be used as a reference for experimental studies on this region, and may be useful in furthering the goals of medicinal chemistry in this field.
机译:实验X射线晶体学,NMR(核磁共振)光谱,双极化干涉法等确实是确定蛋白质(包括膜蛋白质)三维结构的非常强大的工具。理论上的数学和物理计算方法也可以使我们在亚显微水平上获得一些不稳定,非晶态和不溶性蛋白质的蛋白质3D结构描述。 X射线晶体学可以找到蛋白质的X射线最终结构,通常需要使用理论规程对它们进行完善,以产生更好的结构。这意味着理论方法在蛋白质结构测定中也很重要。在计算机辅助药物设计,基于结构的药物设计,分子动力学以及量子和分子力学中,始终需要优化。本文介绍了这些研究领域中使用的一些优化算法,并提出了一种新的理论计算方法-一种改进的LBFGS拟牛顿数学优化方法-可从中产生the病毒AGAAAAGA淀粉样原纤维(不稳定,非晶态和不溶性)的3D结构。势能最小化的观点。由于尚未确定病毒蛋白疏水区域AGAAAAGA的NMR或X射线结构,因此本文构建的模型可以用作对该区域进行实验研究的参考,并可能有助于进一步实现该目标。该领域的药物化学。

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