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Stochastical Analysis of Finite Point Sampling of 3D Chromatin Fiber in Interphase Cell Nuclei

机译:相间细胞核中3D染色质纤维有限点采样的随机分析

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Investigation of 3D chromatin structure in interphase cell nuclei is important for the understanding of genome function. For a reconstruction of the 3D architecture of the human genome, systematic fluorescent in situ hybridization in combination with 3D confocal laser scanning microscopy is applied. The position of two or three genomic loci plus the overall nuclear shape were simultaneously recorded, resulting in statistical series of pair and triple loci combinations probed along the human chromosome 1 q-arm. For interpretation of statistical distributions of geometrical features (e.g. distances, angles, etc.) resulting from finite point sampling experiments, a Monte-Carlo-based approach to numerical computation of geometrical probability density functions (PDFs) for arbitrarily-shaped confined spatial domains is developed. Simulated PDFs are used as bench marks for evaluation of experimental PDFs and quantitative analysis of dimension and shape of probed 3D chromatin regions. Preliminary results of our numerical simulations show that the proposed numerical model is capable to reproduce experimental observations, and support the assumption of confined random folding of 3D chromatin fiber in interphase cell nuclei.
机译:研究相间细胞核中的3D染色质结构对于理解基因组功能非常重要。为了重建人类基因组的3D结构,应用了与3D共聚焦激光扫描显微镜相结合的系统荧光原位杂交技术。同时记录两个或三个基因组基因座的位置以及总体核形状,从而导致沿人类1号染色体q臂探测到的配对和三重基因座组合的统计系列。为了解释有限点采样实验产生的几何特征(例如距离,角度等)的统计分布,使用基于蒙特卡洛的方法对任意形状的受限空间域进行几何概率密度函数(PDF)的数值计算发达。模拟的PDF用作基准,用于评估实验PDF和定量分析3D染色质区域的尺寸和形状。我们的数值模拟的初步结果表明,所提出的数值模型能够重现实验观察结果,并支持3D染色质纤维在相间细胞核中的受限随机折叠的假设。

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