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一种用于数字化 DNA 轮廓的简单且优化的长度估计器。

A simple and optimized length estimator for digitized DNA contours.

机构信息

Department of Biochemistry and Molecular Biology, University of Parma, Parma 43100, Italy.

出版信息

Cytometry A. 2009 Oct;75(10):854-61. doi: 10.1002/cyto.a.20781.

Abstract

The determination of the contour length of DNA imaged by either electron microscopy or atomic force microscopy is frequently required for investigating the physical properties of nucleic acids. Nevertheless, these measurements are often carried out with methods that are not optimized for the curvilinear shape of DNA or are too complex to be of practical use. The aim of this study is to provide a method for the contour length measurements of DNA that is accurate, practical, and computationally simple. Computer simulated DNA fragments were used as experimental benchmarks in order to compute the coefficients a and b of the (n(e), n(o))-characterization [L(n(e),n(o)) = an(e) + bn(o)] so as to minimize the error of the measurements. The data show that, at variance with straight lines, a DNA length estimator depends on both the DNA flexibility and the image resolution, but it is independent of the DNA contour length. A table with DNA estimators to be used for length measurements of digitized contours obtained under commonly used imaging conditions is provided. Although the method has been developed using DNA as a benchmark, its applicability can be extended to other polymers as well as to other imaging techniques.

摘要

无论是通过电子显微镜还是原子力显微镜对 DNA 进行成像,通常都需要确定 DNA 的轮廓长度,以研究核酸的物理性质。然而,这些测量通常是使用未针对 DNA 曲线形状进行优化的方法进行的,或者过于复杂而不实用。本研究旨在提供一种准确、实用且计算简单的 DNA 轮廓长度测量方法。计算机模拟的 DNA 片段被用作实验基准,以计算(n(e), n(o)) 特征的系数 a 和 b(L(n(e),n(o)) = an(e) + bn(o)),从而最小化测量误差。数据表明,与直线不同,DNA 长度估计器不仅取决于 DNA 的柔韧性,还取决于图像分辨率,但与 DNA 轮廓长度无关。提供了一个用于在常用成像条件下获得的数字化轮廓的长度测量的 DNA 估计器的表格。尽管该方法是使用 DNA 作为基准开发的,但它的适用性也可以扩展到其他聚合物以及其他成像技术。

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