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Generation of a Synthetic Human Chromosome with TwoCentromeric Domains for Advanced Epigenetic Engineering Studies

机译:具有两个合成人染色体的生成用于高级表观遗传工程研究的着丝粒域

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摘要

It is generally accepted that chromatin containing the histone H3 variant CENP-A is an epigenetic mark maintaining centromere identity. However, the pathways leading to the formation and maintenance of centromere chromatin remain poorly characterized due to difficulties of analysis of centromeric repeats in native chromosomes. To address this problem, in our previous studies we generated a human artificial chromosome (HAC) whose centromere contains a synthetic alpha-satellite (alphoid) DNA array containing the tetracycline operator, the alphoidtetO-HAC. The presence of tetO sequences allows the specific targeting of the centromeric region in the HAC with different chromatin modifiers fused to the tetracycline repressor. The alphoidtetO-HAC has been extensively used to investigate protein interactions within the kinetochore and to define the epigenetic signature of centromeric chromatin to maintain a functional kinetochore. In this study, we developed a novel synthetic HAC containing two alphoid DNA arrays with different targeting sequences, tetO, lacO and gal4, the alphoidhybrid-HAC. This new HAC can be used for detailed epigenetic engineering studies because its kinetochore can be simultaneously or independently targeted by different chromatin modifiers and otherfusion proteins.
机译:通常认为,含有组蛋白H3变体CENP-A的染色质是保持着丝粒身份的表观遗传标记。然而,由于难以分析天然染色体中着丝粒重复序列,导致着丝粒染色质形成和维持的途径仍然很难表征。为了解决这个问题,在我们以前的研究中,我们生成了一个人类人工染色体(HAC),其着丝粒包含一个合成的α-卫星(alphoid)DNA阵列,其中包含四环素操纵子alphoid tetO -HAC。 tetO序列的存在允许HAC中着丝粒区域的特异性靶向,融合了四环素阻遏物的染色质修饰剂也不同。 alphoid tetO -HAC已广泛用于研究线粒体内的蛋白质相互作用,并定义着丝粒染色质的表观遗传学特征,以维持功能性的线粒体。在这项研究中,我们开发了一种新颖的合成HAC,该HAC包含两个具有不同靶向序列的Alphaid DNA阵列,即tetO,lacO和gal4,即alphoid hybrid -HAC。这种新的HAC可用于详细的表观遗传工程研究,因为其线粒体可以同时或独立地被不同的染色质修饰剂和其他融合蛋白。

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