The spatiotemporal organization of chromatin influences many nuclear processes: from chromosome segregation to transcriptional regulation. To get a deeper understanding of these processes, it is essential to go beyond static viewpoints of chromosome structures, to accurately characterize chromatin's diffusion properties. We present GP-FBM: a computational framework based on Gaussian processes and fractional Brownian motion to extract diffusion properties from stochastic trajectories of labeled chromatin loci. GP-FBM uses higher-order temporal correlations present in the data, therefore, outperforming existing methods. Furthermore, GP-FBM allows to interpolate incomplete trajectories and account for substrate movement when two or more particles are present. Using our method, we show that average chromatin diffusion properties are surprisingly similar in interphase and mitosis in mouse embryonic stem cells. We observe surprising heterogeneity in local chromatin dynamics, correlating with potential regulatory activity. We also present GP-Tool, a user-friendly graphical interface to facilitate usage of GP-FBM by the research community.
Precise measurements of chromatin diffusion dynamics by modeling using Gaussian processes.
利用高斯过程建模对染色质扩散动力学进行精确测量
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作者:Oliveira Guilherme M, Oravecz Attila, Kobi Dominique, Maroquenne Manon, Bystricky Kerstin, Sexton Tom, Molina Nacho
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2021 | 起止号: | 2021 Oct 26; 12(1):6184 |
| doi: | 10.1038/s41467-021-26466-7 | ||
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