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首页> 外文期刊>PLoS Computational Biology >Differential Chromosome Conformations as Hallmarks of Cellular Identity Revealed by Mathematical Polymer Modeling
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Differential Chromosome Conformations as Hallmarks of Cellular Identity Revealed by Mathematical Polymer Modeling

机译:数学聚合物模型揭示了差异染色体构象作为细胞身份的标志

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摘要

Inherently dynamic, chromosomes adopt many different conformations in response to DNA metabolism. Models of chromosome organization in the yeast nucleus obtained from genome-wide chromosome conformation data or biophysical simulations provide important insights into the average behavior but fail to reveal features from dynamic or transient events that are only visible in a fraction of cells at any given moment. We developed a method to determine chromosome conformation from relative positions of three fluorescently tagged DNA in living cells imaged in 3D. Cell type specific chromosome folding properties could be assigned based on positional combinations between three loci on yeast chromosome 3. We determined that the shorter left arm of chromosome 3 is extended in MATα cells, but can be crumpled in MATa cells. Furthermore, we implemented a new mathematical model that provides for the first time an estimate of the relative physical constraint of three linked loci related to cellular identity. Variations in this estimate allowed us to predict functional consequences from chromatin structural alterations in asf1 and recombination enhancer deletion mutant cells. The computational method is applicable to identify and characterize dynamic chromosome conformations in any cell type.
机译:固有地动态,染色体响应DNA代谢而采取许多不同的构象。从全基因组染色体构象数据或生物物理模拟获得的酵母细胞核中的染色体组织模型可提供对平均行为的重要见解,但无法揭示动态或瞬时事件的特征,这些特征在任何给定时刻仅在一部分细胞中可见。我们开发了一种从3D成像的活细胞中的三个荧光标记DNA的相对位置确定染色体构象的方法。可以根据酵母染色体3上三个基因座之间的位置组合来指定细胞类型的特定染色体折叠特性。我们确定,染色体3的较短左臂在MATα细胞中延伸,但在MATa细胞中却被弄皱。此外,我们实现了一个新的数学模型,该模型首次提供了与细胞身份相关的三个链接基因座的相对物理约束的估计值。这种估计的变化使我们能够预测asf1和重组增强子缺失突变细胞中染色质结构改变的功能后果。该计算方法适用于识别和表征任何细胞类型中的动态染色体构象。

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