Institute of Epigenetics and Stem Cells, Helmholtz Center Munich, Munich, Germany.
Institute of Epigenetics and Stem Cells, Helmholtz Center Munich, Munich, Germany.
Methods Cell Biol. 2024;182:199-219. doi: 10.1016/bs.mcb.2023.05.012. Epub 2023 Jul 3.
Transcription-replication conflicts (TRCs) represent a potent endogenous source of replication stress. Besides the spatial and temporal coordination of replication and transcription programs, cells employ many additional mechanisms to resolve TRCs in a timely manner, thereby avoiding replication fork stalling and genomic instability. Proximity ligation assays (PLA) using antibodies against actively elongating RNA Polymerase II (RNAPIIpS2) and PCNA to detect proximity (<40nm) between transcribing RNA polymerases and replication forks can be used to assess and quantify TRC levels in cells. A complementary fluorescence microscopy approach to assess the spatial coordination of transcription and replication activities in the nucleus is to quantify the colocalization (200-400nm) between active transcription and ongoing replication using immunofluorescence staining with an antibody against elongating RNA Polymerase II (RNAPIIpS2) and EdU-Click-it pulse-labelling, respectively. Despite significant efforts to automate image analysis, the need for manual verification, correction, and complementation of automated processes creates a bottleneck for efficient, high-throughput and large-scale imaging. Here, we describe an automated Fiji image analysis macro that allows the user to automate the measurement of RNAPIIpS2 and EdU levels and extract the key parameters such as transcription-replication (TR) colocalization and TRC-PLA foci count from single cells in a high throughput manner. While we showcase the usability of this analysis pipeline for quantifying TR colocalization and TRC-PLA in mouse embryonic stem cells (mESCs), the analysis pipeline is designed as a generally applicable tool allowing the quantification of nuclear signals, colocalization and foci count in various model systems and cell types.
转录-复制冲突(TRCs)是复制应激的一个潜在的内源性来源。除了复制和转录程序的时空协调外,细胞还采用许多其他机制来及时解决 TRC,从而避免复制叉停滞和基因组不稳定性。使用针对活跃延伸的 RNA 聚合酶 II(RNAPIIpS2)和 PCNA 的抗体进行的接近连接测定(PLA)可用于评估和定量细胞中的 TRC 水平。评估核内转录和复制活动空间协调的互补荧光显微镜方法是使用针对延伸的 RNA 聚合酶 II(RNAPIIpS2)的抗体和 EdU-Click-it 脉冲标记分别对活跃转录和正在进行的复制之间的共定位(200-400nm)进行量化。尽管为自动化图像分析做出了巨大努力,但仍需要手动验证、纠正和补充自动化过程,这为高效、高通量和大规模成像造成了瓶颈。在这里,我们描述了一个自动化 Fiji 图像分析宏,允许用户以高通量的方式自动化测量 RNAPIIpS2 和 EdU 水平,并从单个细胞中提取关键参数,如转录-复制(TR)共定位和 TRC-PLA 焦点计数。虽然我们展示了该分析流水线在量化小鼠胚胎干细胞(mESCs)中的 TR 共定位和 TRC-PLA 方面的可用性,但该分析流水线旨在作为一种通用工具,允许对各种模型系统和细胞类型进行核信号、共定位和焦点计数的定量。