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Aio-Casilio: a robust CRISPR-Cas9-Pumilio system for chromosome labeling

机译:Aio-Casilio:用于染色体标记的强大CASP-CAS9-Pumilio系统

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The biological function of chromatin bases on its spatial organization and dynamic activities in different situations. Labeling and tracing of genomic sequences has been a huge challenge in studying the spatial dynamics of chromatin. We reported the development of 'all-in-one Casilio system (Aio-Casilio)', a new system that enables the labeling of endogenous genomic loci. The Aio-Casilio system consists of the dCas9 protein, mClover fused with the Pumilio and FBF proteins RNA-binding domain (PUF domain) and an U6-sgRNA appended with multiple PUF-binding site(s). Here we showed that the Aio-Casilio system is robust tool for imaging of repetitive elements in telomeres and major satellite in N2A cells. Furthermore, we developed a PBTon-Aio-Casilio System, which enables the visualization of repetitive sequences in mES cells. However, this system failed to establish a labeled ES cell line when we attempted to establish a stable labeling cell line for living cell image. This Aio-Casilio imaging tool has potential to significantly improve the capacity to study the conformation of chromosomes in living cells.
机译:染色质的生物学功能基于其在不同情况下的空间组织和动态活动。基因组序列的标记和追踪一直是研究染色质空间动力学的一个巨大挑战。我们报道了“一体式Casilio系统(Aio Casilio)”的开发,这是一种能够标记内源性基因组位点的新系统。Aio Casilio系统由dCas9蛋白、与Pumilio和FBF蛋白RNA结合域(PUF域)融合的mClover蛋白和附加有多个PUF结合位点的U6 sgRNA组成。在这里,我们展示了Aio Casilio系统是一个强大的工具,可以对端粒中的重复元素和N2A细胞中的主要卫星进行成像。此外,我们开发了一个PBTon Aio Casilio系统,该系统能够可视化mES细胞中的重复序列。然而,当我们试图为活细胞图像建立稳定的标记细胞系时,该系统未能建立标记的ES细胞系。这种Aio Casilio成像工具有可能显著提高研究活细胞染色体构象的能力。

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