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扩展的 CAG/CTG 重复序列抵抗靶向表观基因组编辑介导的基因沉默。

Expanded CAG/CTG repeats resist gene silencing mediated by targeted epigenome editing.

出版信息

Hum Mol Genet. 2022 Feb 3;31(3):386-398. doi: 10.1093/hmg/ddab255.

Abstract

Expanded CAG/CTG repeat disorders affect over 1 in 2500 individuals worldwide. Potential therapeutic avenues include gene silencing and modulation of repeat instability. However, there are major mechanistic gaps in our understanding of these processes, which prevent the rational design of an efficient treatment. To address this, we developed a novel system, ParB/ANCHOR-mediated Inducible Targeting (PInT), in which any protein can be recruited at will to a GFP reporter containing an expanded CAG/CTG repeat. Previous studies have implicated the histone deacetylase HDAC5 and the DNA methyltransferase DNMT1 as modulators of repeat instability via mechanisms that are not fully understood. Using PInT, we found no evidence that HDAC5 or DNMT1 modulate repeat instability upon targeting to the expanded repeat, suggesting that their effect is independent of local chromatin structure. Unexpectedly, we found that expanded CAG/CTG repeats reduce the effectiveness of gene silencing mediated by targeting HDAC5 and DNMT1. The repeat-length effect in gene silencing by HDAC5 was abolished by a small molecule inhibitor of HDAC3. Our results have important implications on the design of epigenome editing approaches for expanded CAG/CTG repeat disorders. PInT is a versatile synthetic system to study the effect of any sequence of interest on epigenome editing.

摘要

扩展的 CAG/CTG 重复障碍影响全球超过 1/2500 的个体。潜在的治疗途径包括基因沉默和重复不稳定性的调节。然而,我们对这些过程的理解存在重大的机制差距,这阻碍了有效治疗的合理设计。为了解决这个问题,我们开发了一种新的系统,ParB/ANCHOR 介导的诱导靶向(PInT),在这个系统中,任何蛋白质都可以随意被招募到一个含有扩展的 CAG/CTG 重复的 GFP 报告基因上。先前的研究表明,组蛋白去乙酰化酶 HDAC5 和 DNA 甲基转移酶 DNMT1 通过不完全了解的机制作为重复不稳定性的调节剂。使用 PInT,我们没有发现证据表明 HDAC5 或 DNMT1 在靶向扩展重复时调节重复不稳定性,这表明它们的作用独立于局部染色质结构。出乎意料的是,我们发现扩展的 CAG/CTG 重复降低了靶向 HDAC5 和 DNMT1 介导的基因沉默的有效性。HDAC5 介导的基因沉默的重复长度效应被 HDAC3 的小分子抑制剂所消除。我们的结果对设计针对扩展 CAG/CTG 重复障碍的表观基因组编辑方法具有重要意义。PInT 是一个通用的合成系统,可以研究任何感兴趣的序列对表观基因组编辑的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08bb/8825355/0ce2da54aef6/ddab255f1.jpg

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