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Reorganized 3D Genome Structures Support Transcriptional Regulation in Mouse Spermatogenesis

机译:重组的3D基因组结构支持小鼠精子发生中的转录调控。

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摘要

Three-dimensional chromatin structures undergo dynamic reorganization during mammalian spermatogenesis; however, their impacts on gene regulation remain unclear. Here, we focused on understanding the structure-function regulation of meiotic chromosomes by Hi-C and other omics techniques in mouse spermatogenesis across five stages. Beyond confirming recent reports regarding changes in compartmentalization and reorganization of topologically associating domains (TADs), we further demonstrated that chromatin loops are present prior to and after, but not at, the pachytene stage. By integrating Hi-C and RNA-seq data, we showed that the switching of A/B compartments between spermatogenic stages is tightly associated with meiosis-specific mRNAs and piRNAs expression. Moreover, our ATAC-seq data indicated that chromatin accessibility is not responsible for the TAD and loop diminishment at pachytene. Additionally, our ChIP-seq data demonstrated that CTCF and cohesin remain bound at TAD boundary regions throughout meiosis, suggesting that dynamic reorganization of TADs does not require CTCF and cohesin clearance.
机译:三维染色质结构在哺乳动物精子发生过程中经历动态重组;然而,它们对基因调控的影响尚不清楚。在这里,我们集中于了解Hi-C和其他组学技术在五个阶段小鼠精子发生过程中减数分裂染色体的结构功能调控。除了确认有关拓扑关联域(TAD)的区室化和重组变化的最新报道外,我们还证明了染色质环存在于粗线期之前和之后,而不是在粗线期。通过整合Hi-C和RNA-seq数据,我们表明生精期之间A / B区室的切换与减数分裂特异的mRNA和piRNA的表达紧密相关。此外,我们的ATAC-seq数据表明,染色质的可及性不负责TAD和粗线中环的减少。此外,我们的ChIP-seq数据表明,在整个减数分裂过程中,CTCF和黏附素仍在TAD边界区域结合,这表明TAD的动态重组不需要CTCF和黏附素清除。

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