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Identifying cis Elements for Spatiotemporal Control of Mammalian DNA Replication

机译:识别哺乳动物DNA复制的时尚控制的顺式元素

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摘要

The temporal order of DNA replication (replication timing [RT]) is highly coupled with genome architecture, but cis-elements regulating either remain elusive. We created a series of CRISPR-mediated deletions and inversions of a pluripotency-associated topologically associating domain (TAD) in mouse ESCs. CTCF-associated domain boundaries were dispensable for RT. CTCF protein depletion weakened most TAD boundaries but had no effect on RT or A/B compartmentalization genome-wide. By contrast, deletion of three intra-TAD CTCF-independent 3D contact sites caused a domain-wide early to-late RT shift, an A-to-B compartment switch, weakening of TAD architecture, and loss of transcription. The dispensability of TAD boundaries and the necessity of these "early replication control elements" (ERCEs) was validated by deletions and inversions at additional domains. Our results demonstrate that discrete cis-regulatory elements orchestrate domain-wide RT, NB compartmentalization, TAD architecture, and transcription, revealing fundamental principles linking genome structure and function.
机译:DNA复制的时间顺序(复制时序[RT])高度耦合,但是CIS-ELEMINGS调节仍然难以捉摸。我们在鼠标ESC中创建了一系列CRISPR-CELIC-COMPORTICAL关联域(TAD)的多能性相关的拓扑上关联域(TAD)。 CTCF相关的畴边界可分配RT。 CTCF蛋白耗尽削弱了大多数TAD边界,但对RT或A / B划分的基因组无关没有影响。相比之下,删除三个基于TAD的CTCF无关的3D接触网站导致域宽的早期rt转移,A-to-B隔室开关,TAD架构的弱化以及转录的丧失。 TAD边界的可分配性和这些“早期复制控制元素”(ERCES)的必要性被额外域的缺失和逆转验证。我们的结果表明,离散的CIS-COMMENTOVATION ELEAGES协调域宽RT,NB划分,TAD架构和转录,揭示了与基因组结构和功能相关的基本原理。

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