Histo-LCM-Hi-C Reveals 3D Chromatin Conformations of Spatially Localized Rare Cells in Tissues at High Resolution.

IF 7.9
Yixin Liu, Min Chen, Xin Liu, Zeqian Xu, Xinhui Li, Yan Guo, Daniel M Czajkowsky, Zhifeng Shao
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Abstract

It is now well established that an understanding of the chromatin structure is essential to delineate the mechanisms underlying genomic processes. However, while methods to obtain this information from cells in vitro are widely available, there is presently a significant lack of techniques that can acquire this data from cells in the tissue. Such a capability is critical to determine the dependence of the local tissue environment on cell functioning. Further, this ability is particularly necessary for cells that are a significant minority of the total tissue population, which are often obscured in data dominated by more abundant tissue cells. Here we have developed Histological Laser Capture Microdissection Hi-C (Histo-LCM-Hi-C) to enable the characterization of chromatin architecture of phenotype-defined, spatially localized cells within intact tissue sections from as few as about 300 cells. We demonstrate the effectiveness of this approach with the generation of the first 3D Hi-C map of the tissue-resident macrophages of the liver, the Kupffer cells (KC), which are a minor cell population in the normal liver. As expected, owing to their relative rarity, these KC maps are significantly different from those obtained from whole liver, revealing distant contacts between putative enhancers and genes involved in key KC functions as well as significant differences with that of in vitro induced bone-marrow derived macrophages. We anticipate that this method will prove to be an indispensable technique in the growing repertoire of methodologies used for the characterization of the genomic properties of cells within their native environment.

组织- lcm - hi - c高分辨率揭示组织中空间定位的稀有细胞的三维染色质构象。
现在已经确定,对染色质结构的理解对于描述基因组过程的潜在机制是必不可少的。然而,虽然从体外细胞中获得这些信息的方法广泛可用,但目前明显缺乏从组织细胞中获取这些数据的技术。这种能力对于确定局部组织环境对细胞功能的依赖性至关重要。此外,这种能力对于占总组织群体显著少数的细胞尤其必要,这些细胞通常在由更丰富的组织细胞主导的数据中被掩盖。在这里,我们开发了组织学激光捕获显微解剖Hi-C(组织- lcm -Hi-C),以表征表型确定的染色质结构,在完整的组织切片中,只有大约300个细胞的空间定位细胞。我们通过生成肝脏组织巨噬细胞库普弗细胞(KC)的第一个3D Hi-C图来证明这种方法的有效性,库普弗细胞(KC)是正常肝脏中的一个次要细胞群。正如预期的那样,由于它们的相对稀缺性,这些KC图谱与从全肝中获得的KC图谱明显不同,揭示了假定的增强子与参与关键KC功能的基因之间的遥远联系,以及与体外诱导的骨髓源性巨噬细胞的显著差异。我们预计,这种方法将被证明是一种不可或缺的技术,在越来越多的方法中,用于表征细胞在其天然环境中的基因组特性。
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