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3C and 3C-based techniques: the powerful tools for spatial genome organization deciphering

机译:基于3C和3C的技术:用于空间基因组组织解密的强大工具

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摘要

It is well known that the chromosomes are organized in the nucleus and this spatial arrangement of genome play a crucial role in gene regulation and genome stability. Different techniques have been developed and applied to uncover the intrinsic mechanism of genome architecture, especially the chromosome conformation capture (3C) and 3C-derived methods. 3C and 3C-derived techniques provide us approaches to perform high-throughput chromatin architecture assays at the genome scale. However, the advantage and disadvantage of current methodologies of C-technologies have not been discussed extensively. In this review, we described and compared the methodologies of C-technologies used in genome organization studies with an emphasis on Hi-C method. We also discussed the crucial challenges facing current genome architecture studies based on 3C and 3C-derived technologies and the direction of future technologies to address currently outstanding questions in the field. These latest news contribute to our current understanding of genome structure, and provide a comprehensive reference for researchers to choose the appropriate method in future application. We consider that these constantly improving technologies will offer a finer and more accurate contact profiles of entire genome and ultimately reveal specific molecular machines govern its shape and function.
机译:众所周知,染色体组织在细胞核中,基因组的这种空间排列在基因调节和基因组稳定性中起着至关重要的作用。已经开发出各种技术并将其应用于揭示基因组架构的内在机制,尤其是染色体构象捕获(3C)和3C衍生的方法。 3C和3C衍生的技术为我们提供了在基因组规模上进行高通量染色质体系分析的方法。但是,目前尚未广泛讨论C技术的优缺点。在这篇综述中,我们描述并比较了基因组组织研究中使用的C技术的方法学,重点是Hi-C方法。我们还讨论了基于3C和3C衍生技术的当前基因组架构研究面临的关键挑战,以及解决该领域当前悬而未决问题的未来技术发展方向。这些最新消息有助于我们对基因组结构的当前了解,并为研究人员选择将来的应用中的适当方法提供了全面的参考。我们认为,这些不断改进的技术将为整个基因组提供更精细,更准确的接触曲线,并最终揭示出由特定的分子机器控制其形状和功能。

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