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Improved Determination of Subnuclear Position Enabled by Three-Dimensional Membrane Reconstruction

机译:三维膜重构在亚核位置的改进确定

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摘要

Many aspects of chromatin biology are influenced by the nuclear compartment in which a locus resides, from transcriptional regulation to DNA repair. Further, the dynamic and variable localization of a particular locus across cell populations and over time makes analysis of a large number of cells critical. As a consequence, robust and automatable methods to measure the position of individual loci within the nuclear volume in populations of cells are necessary to support quantitative analysis of nuclear position. Here, we describe a three-dimensional membrane reconstruction approach that uses fluorescently tagged nuclear envelope or endoplasmic reticulum membrane marker proteins to precisely map the nuclear volume. This approach is robust to a variety of nuclear shapes, providing greater biological accuracy than alternative methods that enforce nuclear circularity, while also describing nuclear position in all three dimensions. By combining this method with established approaches to reconstruct the position of diffraction-limited chromatin markers—in this case, lac Operator arrays bound by lacI-GFP—the distribution of loci positions within the nuclear volume with respect to the nuclear periphery can be quantitatively obtained. This stand-alone image analysis pipeline should be of broad practical utility for individuals interested in various aspects of chromatin biology, while also providing, to our knowledge, a new conceptual framework for investigators who study organelle shape.
机译:从转录调控到DNA修复,染色质生物学的许多方面都受到基因座所在核室的影响。此外,特定基因座在整个细胞群体中的动态和可变定位以及随着时间的推移,使得对大量细胞的分析变得至关重要。因此,必须有鲁棒且可自动化的方法来测量细胞群体中核体积内各个基因座的位置,以支持对核位置的定量分析。在这里,我们描述了一种三维膜重建方法,该方法使用荧光标记的核包膜或内质网膜标记蛋白来精确映射核体积。这种方法对于各种形状的核都是鲁棒的,与强制执行核圆性的替代方法相比,提供了更高的生物学准确性,同时还描述了所有三个维度的核位置。通过将该方法与已建立的方法相结合来重建衍射受限的染色质标记的位置-在这种情况下,由lacI-GFP结合的lac Operator阵列-可以定量获得相对于核外围的核体积内基因座位置的分布。对于对染色质生物学各个方面感兴趣的个人,该独立的图像分析管道应具有广泛的实用性,同时,就我们所知,还为研究细胞器形状的研究者提供了新的概念框架。

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