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An intuitive approach to measuring protein surface curvature.

机译:一种测量蛋白质表面曲率的直观方法。

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A natural way to measure protein surface curvature is to generate the least squares fitted (LSF) sphere to a surface patch and use the radius as the curvature measure. While the concept is simple, the sphere-fitting problem is not trivial and known means of protein surface curvature measurement use alternative schemes that are arguably less straightforward to interpret. We have developed an approach to solve the LSF sphere problem by turning the sphere-fitting problem into a solvable plane-fitting problem using a transformation known as geometric inversion. The approach works on any arbitrary surface patch, and returns a radius of curvature that has direct physical interpretation. Additionally, it is flexible in its ability to find the curvature of an arbitrary surface patch, and the "resolution" can be adjusted to highlight atomic features or larger features such as peptide binding sites. We include examples of applying the method to visualization of peptide recognition pockets and protein conformational change, as well as a comparison with a commonly used solid-angle curvature method showing that the LSF method produces more pronounced curvature results.
机译:测量蛋白质表面曲率的一种自然方法是生成与表面斑块拟合的最小二乘(LSF)球,并使用半径作为曲率度量。尽管概念很简单,但是球体拟合问题并不简单,蛋白质表面曲率测量的已知方法使用的替代方案可能难以解释。我们已经开发出一种方法来解决LSF球体问题,方法是使用称为几何反演的转换将球体拟合问题转换为可解平面拟合问题。该方法适用于任何任意表面补丁,并返回具有直接物理解释的曲率半径。另外,它在发现任意表面补丁的曲率方面具有灵活性,并且可以调整“分辨率”以突出显示原子特征或更大的特征,例如肽结合位点。我们提供了将该方法应用于肽识别袋和蛋白质构象变化可视化的示例,并与常用的立体角曲率方法进行了比较,显示LSF方法产生了更明显的曲率结果。

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