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KRAB 锌指蛋白和 KAP1 可以通过异染色质扩散介导长距离转录抑制。

KRAB-zinc finger proteins and KAP1 can mediate long-range transcriptional repression through heterochromatin spreading.

机构信息

School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

出版信息

PLoS Genet. 2010 Mar 5;6(3):e1000869. doi: 10.1371/journal.pgen.1000869.

Abstract

Krüppel-associated box domain-zinc finger proteins (KRAB-ZFPs) are tetrapod-specific transcriptional repressors encoded in the hundreds by the human genome. In order to explore their as yet ill-defined impact on gene expression, we developed an ectopic repressor assay, allowing the study of KRAB-mediated transcriptional regulation at hundreds of different transcriptional units. By targeting a drug-controllable KRAB-containing repressor to gene-trapping lentiviral vectors, we demonstrate that KRAB and its corepressor KAP1 can silence promoters located several tens of kilobases (kb) away from their DNA binding sites, with an efficiency which is generally higher for promoters located within 15 kb or less. Silenced promoters exhibit a loss of histone H3-acetylation, an increase in H3 lysine 9 trimethylation (H3K9me3), and a drop in RNA Pol II recruitment, consistent with a block of transcriptional initiation following the establishment of silencing marks. Furthermore, we reveal that KRAB-mediated repression is established by the long-range spreading of H3K9me3 and heterochromatin protein 1 beta (HP1beta) between the repressor binding site and the promoter. We confirm the biological relevance of this phenomenon by documenting KAP1-dependent transcriptional repression at an endogenous KRAB-ZFP gene cluster, where KAP1 binds to the 3' end of genes and mediates propagation of H3K9me3 and HP1beta towards their 5' end. Together, our data support a model in which KRAB/KAP1 recruitment induces long-range repression through the spread of heterochromatin. This finding not only suggests auto-regulatory mechanisms in the control of KRAB-ZFP gene clusters, but also provides important cues for interpreting future genome-wide DNA binding data of KRAB-ZFPs and KAP1.

摘要

Krüppel 相关盒域-锌指蛋白(KRAB-ZFPs)是四足动物特异性转录抑制剂,人类基因组中编码了数百个。为了探索其尚未明确的基因表达影响,我们开发了一种异位抑制剂测定法,允许在数百个不同的转录单位上研究 KRAB 介导的转录调控。通过将药物可控 KRAB 包含的抑制剂靶向基因捕获慢病毒载体,我们证明 KRAB 和其共抑制剂 KAP1 可以沉默远离其 DNA 结合位点的数十千碱基(kb)的启动子,其效率通常对于位于 15 kb 或更短距离内的启动子更高。沉默的启动子表现出组蛋白 H3-乙酰化的丧失、H3 赖氨酸 9 三甲基化(H3K9me3)的增加以及 RNA Pol II 募集的下降,与沉默标记建立后转录起始的阻断一致。此外,我们揭示 KRAB 介导的抑制是通过抑制剂结合位点和启动子之间的 H3K9me3 和异染色质蛋白 1 beta(HP1beta)的长距离扩散建立的。我们通过记录 KAP1 依赖性内源性 KRAB-ZFP 基因簇的转录抑制来证实这一现象的生物学相关性,其中 KAP1 结合基因的 3'端,并介导 H3K9me3 和 HP1beta 向其 5'端的传播。总之,我们的数据支持这样一种模型,即 KRAB/KAP1 募集通过异染色质的传播诱导长距离抑制。这一发现不仅暗示了 KRAB-ZFP 基因簇控制中的自动调节机制,而且为解释未来 KRAB-ZFPs 和 KAP1 的全基因组 DNA 结合数据提供了重要线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd2c/2832679/ff37fd037c15/pgen.1000869.g001.jpg

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