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CENP-B 盒阳性和阴性合成α卫星重复序列的组合可提高从头合成的人人工染色体形成。

Combination of CENP-B Box Positive and Negative Synthetic Alpha Satellite Repeats Improves De Novo Human Artificial Chromosome Formation.

机构信息

Laboratory of Chromosome Engineering, Department of Frontier Research and Development, Kazusa DNA Research Institute, 2-6-7 Kazusa-Kamatari, Kisarazu 292-0818, Japan.

Public Relations and Research Promotion Group, Kazusa DNA Research Institute, 2-6-7 Kazusa-Kamatari, Kisarazu 292-0818, Japan.

出版信息

Cells. 2022 Apr 19;11(9):1378. doi: 10.3390/cells11091378.

Abstract

Human artificial chromosomes (HACs) can be formed de novo by introducing large (>30 kb) centromeric sequences consisting of highly repeated 171-bp alpha satellite (alphoid) DNA into HT1080 cells. However, only a subset of transformed cells successfully establishes HACs. CENP-A chromatin and heterochromatin assemble on the HACs and play crucial roles in chromosome segregation. The CENP-B protein, which binds a 17-bp motif (CENP-B box) in the alphoid DNA, functions in the formation of alternative CENP-A chromatin or heterochromatin states. A balance in the coordinated assembly of these chromatin states on the introduced alphoid DNA is important for HAC formation. To obtain information about the relationship between chromatin architecture and de novo HAC formation efficiency, we tested combinations of two 60-kb synthetic alphoid sequences containing either tetO or lacO plus a functional or mutated CENP-B box combined with a multiple fusion protein tethering system. The combination of mutated and wild-type CENP-B box alphoid repeats significantly enhanced HAC formation. Both CENP-A and HP1α were enriched in the wild-type alphoid DNA, whereas H3K27me3 was enriched on the mutant alphoid array. The presence or absence of CENP-B binding resulted in differences in the assembly of CENP-A chromatin on alphoid arrays and the formation of H3K9me3 or H3K27me3 heterochromatin.

摘要

人类人工染色体(HAC)可以通过将包含高度重复的 171 个碱基对α卫星(着丝粒卫星)DNA 的大(>30 kb)着丝粒序列引入 HT1080 细胞中来从头形成。然而,只有一部分转化细胞成功建立了 HAC。CENP-A 染色质和异染色质组装在 HAC 上,并在染色体分离中发挥关键作用。CENP-B 蛋白结合在α卫星 DNA 中的 17 个碱基对(CENP-B 盒),在形成替代的 CENP-A 染色质或异染色质状态中发挥作用。在引入的α卫星 DNA 上协调组装这些染色质状态的平衡对于 HAC 的形成很重要。为了获得关于染色质结构与从头 HAC 形成效率之间关系的信息,我们测试了两种含有 tetO 或 lacO 的 60kb 合成α卫星序列的组合,以及与功能或突变的 CENP-B 盒结合的多功能融合蛋白固定系统。突变型和野生型 CENP-B 盒α卫星重复的组合显著增强了 HAC 的形成。CENP-A 和 HP1α 在野生型α卫星 DNA 中富集,而 H3K27me3 在突变型α卫星阵列中富集。CENP-B 结合的存在与否导致 CENP-A 染色质在α卫星阵列上的组装以及 H3K9me3 或 H3K27me3 异染色质的形成存在差异。

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