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Computing 3D Chromatin Configurations from Contact Probability Maps by Inverse Brownian Dynamics

机译:通过逆布朗动态计算从联系概率图的三维染色质配置

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The three-dimensional (3D) organization of chromatin, on the length scale of a few genes, is crucial in determining the functional state-accessibility and amount of gene expression-of the chromatin. Recent advances in chromosome conformation capture experiments provide partial information on the chromatin organization in a cell population, namely the contact count between any segment pairs, but not on the interaction strength that leads to these contact counts. However, given the contact matrix, determining the complete 3D organization of the whole chromatin polymer is an inverse problem. In this work, a novel inverse Brownian dynamics method based on a coarse-grained bead-spring chain model has been proposed to compute the optimal interaction strengths between different segments of chromatin such that the experimentally measured contact count probability constraints are satisfied. Applying this method to the alpha-globin gene locus in two different cell types, we predict the 3D organizations corresponding to active and repressed states of chromatin at the locus. We show that the average distance between any two segments of the region has a broad distribution and cannot be computed as a simple inverse relation based on the contact probability alone. The results presented for multiple normalization methods suggest that all measurable quantities may crucially depend on the nature of normalization. We argue that by experimentally measuring predicted quantities, one may infer the appropriate form of normalization.
机译:染色质的三维(3D)组织在少数基因的长度范围内是至关重要的,在确定染色质的功能性状态可访问性和基因表达的量。染色体构象捕获实验的最新进展在细胞群中提供了关于染色质组织的部分信息,即任何段对之间的接触计数,但不能导致这些接触计数的相互作用强度。然而,考虑到接触基质,确定整个染色质聚合物的完整3D组织是逆问题。在这项工作中,已经提出了一种基于粗粒珠子弹簧链模型的新型逆褐色动力学方法,以计算染色质不同段之间的最佳相互作用强度,使得满足实验测量的接触计数概率约束。将该方法应用于两种不同的细胞类型中的α-珠蛋白基因基因座,我们预测了对应于轨迹的染色质的活性和压抑状态的3D组织。我们表明,该区域的任何两个段之间的平均距离具有广泛的分布,并且不能根据单独的接触概率计算为简单的反向关系。提供多种归一化方法的结果表明,所有可测量的数量都可能是至关重要的,这取决于标准化的性质。我们认为,通过通过实验测量预测量,可以推断出适当的标准化形式。

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