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RASER-FISH:用于保存三维间期染色质结构的非变性荧光原位杂交。

RASER-FISH: non-denaturing fluorescence in situ hybridization for preservation of three-dimensional interphase chromatin structure.

机构信息

MRC Molecular Haematology Unit, MRC Weatherall Institute of Molecular Medicine, Oxford University, Oxford, UK.

School of Clinical Medicine, Addenbrooke's Hospital, Cambridge, UK.

出版信息

Nat Protoc. 2022 May;17(5):1306-1331. doi: 10.1038/s41596-022-00685-8. Epub 2022 Apr 4.

Abstract

DNA fluorescence in situ hybridization (FISH) has been a central technique in advancing our understanding of how chromatin is organized within the nucleus. With the increasing resolution offered by super-resolution microscopy, the optimal maintenance of chromatin structure within the nucleus is essential for accuracy in measurements and interpretation of data. However, standard 3D-FISH requires potentially destructive heat denaturation in the presence of chaotropic agents such as formamide to allow access to the DNA strands for labeled FISH probes. To avoid the need to heat-denature, we developed Resolution After Single-strand Exonuclease Resection (RASER)-FISH, which uses exonuclease digestion to generate single-stranded target DNA for efficient probe binding over a 2 d process. Furthermore, RASER-FISH is easily combined with immunostaining of nuclear proteins or the detection of RNAs. Here, we provide detailed procedures for RASER-FISH in mammalian cultured cells to detect single loci, chromatin tracks and topologically associating domains with conventional and super-resolution 3D structured illumination microscopy. Moreover, we provide a validation and characterization of our method, demonstrating excellent preservation of chromatin structure and nuclear integrity, together with improved hybridization efficiency, compared with classic 3D-FISH protocols.

摘要

DNA 荧光原位杂交(FISH)一直是深入了解染色质在核内如何组织的核心技术。随着超分辨率显微镜提供的分辨率不断提高,核内染色质结构的最佳维持对于测量的准确性和数据的解释至关重要。然而,标准的 3D-FISH 需要在存在离液剂(如甲酰胺)的情况下进行潜在破坏性的热变性,以允许标记的 FISH 探针访问 DNA 链。为了避免热变性的需要,我们开发了 Resolution After Single-strand Exonuclease Resection(RASER)-FISH,它使用核酸外切酶消化来产生单链靶 DNA,从而在 2 天的过程中实现高效的探针结合。此外,RASER-FISH 很容易与核蛋白的免疫染色或 RNA 的检测相结合。在这里,我们提供了在哺乳动物培养细胞中进行 RASER-FISH 的详细程序,以使用常规和超分辨率 3D 结构照明显微镜检测单个基因座、染色质轨迹和拓扑关联域。此外,我们对我们的方法进行了验证和特征描述,与经典的 3D-FISH 方案相比,证明了出色的染色质结构和核完整性的保留,以及杂交效率的提高。

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