...
首页> 外文期刊>PLoS Computational Biology >Rigid-body fitting to atomic force microscopy images for inferring probe shape and biomolecular structure
【24h】

Rigid-body fitting to atomic force microscopy images for inferring probe shape and biomolecular structure

机译:刚体拟合原子力显微镜图像,用于推断探测形状和生物分子结构

获取原文
           

摘要

Atomic force microscopy (AFM) can visualize functional biomolecules near the physiological condition, but the observed data are limited to the surface height of specimens. Since the AFM images highly depend on the probe tip shape, for successful inference of molecular structures from the measurement, the knowledge of the probe shape is required, but is often missing. Here, we developed a method of the rigid-body fitting to AFM images, which simultaneously finds the shape of the probe tip and the placement of the molecular structure via an exhaustive search. First, we examined four similarity scores via twin-experiments for four test proteins, finding that the cosine similarity score generally worked best, whereas the pixel-RMSD and the correlation coefficient were also useful. We then applied the method to two experimental high-speed-AFM images inferring the probe shape and the molecular placement. The results suggest that the appropriate similarity score can differ between target systems. For an actin filament image, the cosine similarity apparently worked best. For an image of the flagellar protein FlhAC, we found the correlation coefficient gave better results. This difference may partly be attributed to the flexibility in the target molecule, ignored in the rigid-body fitting. The inferred tip shape and placement results can be further refined by other methods, such as the flexible fitting molecular dynamics simulations. The developed software is publicly available.
机译:原子力显微镜(AFM)可以在生理条件附近可视化功能生物分子,但观察到的数据仅限于样本的表面高度。由于AFM图像高度依赖于探针尖端,因此从测量中成功推动分子结构,因此需要了解探针形状,但通常丢失。这里,我们开发了一种对AFM图像的刚体配件的方法,其同时通过详尽的搜索同时找到探针尖端的形状和分子结构的放置。首先,我们通过双实验检查了四个相似性分数,用于四种测试蛋白,发现余弦相似度得分通常最佳,而像素-RMSD和相关系数也是有用的。然后,我们将该方法应用于两个实验高速AFM图像推断探测形状和分子放置。结果表明,目标系统之间的适当相似度分数可能不同。对于肌动蛋白灯丝图像,余弦相似度显然是最佳的。对于鞭毛蛋白FLHAC的图像,我们发现相关系数给出了更好的结果。这种差异可能部分归因于目标分子中的灵活性,在刚体配件中忽略。推断的尖端形状和放置结果可以通过其他方法进一步改进,例如柔性拟合分子动力学模拟。开发的软件公开可用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号