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Capturing variations in nuclear phenotypes

机译:捕获核表型的变异

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Relating genotypes with phenotypes is important to understand diseases like cancer, but extremely challenging, given the underlying biological variability and levels of phenotypes. 3D quantitative tools are increasingly used to provide robust inferences pertaining to variations across collections of cells. We especially focus on the changes wrought to the nucleus of specific genotypes. Fibroblasts in the tumor microenvironment of mammary epithelial tissue serve as our model system and provide the context, although our methods are applicable to a broader range of biological systems. Using an image based approach, we analyze in 3D and compare phenotypes at nuclear level using estimates of texture, morphology and spatial context based on confocal images.Our data demonstrates that deletion of TP53 in stromal fibroblasts results in reorganization of chromatin content across the nucleus, especially the nuclear periphery, while simultaneously reducing nuclear size and making it more spindly. No such shape change was observed for PTEN-deleted genotype, although there were some differences in distribution of chromatin and an increase in the local nuclear density.The relative changes in phenotypes are in line with the larger role that the TP53 plays in tumor initiation and progression.These findings play an important role in uncovering the relationships of those genes with the subcellular phenotypes, as well as formulating new hypotheses, especially pertaining to the relative impact of genes in specific pathways. More importantly, they demonstrate the efficacy of methodology of analyzing a large number of cellular phenotypes. (C) 2019 Elsevier B.V. All rights reserved.
机译:将基因型与表型相关联对于理解癌症等疾病非常重要,但鉴于潜在的生物学变异性和表型水平,这极具挑战性。 3D定量工具越来越多地用于提供与细胞集合中的变异有关的可靠推断。我们特别关注于特定基因型的核所发生的变化。乳腺上皮组织肿瘤微环境中的成纤维细胞可作为我们的模型系统并提供背景信息,尽管我们的方法适用于更广泛的生物系统。我们使用基于图像的方法对3D图像进行分析,并根据共焦图像对纹理,形态和空间背景进行估计,从而在核水平上比较表型。我们的数据表明,间质成纤维细胞中TP53的缺失会导致整个核内染色质含量的重组,特别是核外围,同时减小核的大小并使之变得更加尖锐。缺失PTEN的基因型没有观察到这种形状变化,尽管染色质的分布和局部核密度的增加存在一些差异。表型的相对变化与TP53在肿瘤发生和发展中发挥更大作用相一致。这些发现在揭示那些基因与亚细胞表型之间的关系,以及提出新的假设,尤其是有关基因在特定途径中的相对影响方面,起着重要的作用。更重要的是,他们证明了分析大量细胞表型的方法学的有效性。 (C)2019 Elsevier B.V.保留所有权利。

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