Siren Pharmaceuticals, Boston, USA.
Institute for Innovation in Imaging, Massachusetts General Hospital, Harvard Medical School, Boston, USA.
Sci Rep. 2024 May 2;14(1):10046. doi: 10.1038/s41598-024-60654-x.
Phenotype based screening is a powerful tool to evaluate cellular drug response. Through high content fluorescence imaging of simple fluorescent labels and complex image analysis phenotypic measurements can identify subtle compound-induced cellular changes unique to compound mechanisms of action (MoA). Recently, a screen of 1008 compounds in three cell lines was reported where analysis detected changes in cellular phenotypes and accurately identified compound MoA for roughly half the compounds. However, we were surprised that DNA alkylating agents and other compounds known to induce or impact the DNA damage response produced no measured activity in cells with fluorescently labeled 53BP1-a canonical DNA damage marker. We hypothesized that phenotype analysis is not sensitive enough to detect small changes in 53BP1 distribution and analyzed the screen images with autocorrelation image analysis. We found that autocorrelation analysis, which quantifies fluorescently-labeled protein clustering, identified higher compound activity for compounds and MoAs known to impact the DNA damage response, suggesting altered 53BP1 recruitment to damaged DNA sites. We then performed experiments under more ideal imaging settings and found autocorrelation analysis to be a robust measure of changes to 53BP1 clustering in the DNA damage response. These results demonstrate the capacity of autocorrelation to detect otherwise undetectable compound activity and suggest that autocorrelation analysis of specific proteins could serve as a powerful screening tool.
基于表型的筛选是评估细胞药物反应的有力工具。通过对简单荧光标记物的高内涵荧光成像和复杂的图像分析,表型测量可以识别出化合物作用机制(MoA)特有的细微细胞变化。最近,有研究报告称在三种细胞系中对 1008 种化合物进行了筛选,分析检测到细胞表型的变化,并准确识别出大约一半化合物的化合物 MoA。然而,我们感到惊讶的是,DNA 烷化剂和其他已知诱导或影响 DNA 损伤反应的化合物在荧光标记的 53BP1(一种典型的 DNA 损伤标志物)的细胞中没有表现出可测量的活性。我们假设表型分析不够敏感,无法检测 53BP1 分布的微小变化,并使用自相关图像分析对筛选图像进行了分析。我们发现,自相关分析(定量荧光标记蛋白聚类)可识别出对 DNA 损伤反应有影响的化合物和 MoA 更高的活性,表明 53BP1 向受损 DNA 位点的募集发生了改变。然后,我们在更理想的成像条件下进行了实验,发现自相关分析是检测 DNA 损伤反应中 53BP1 聚类变化的一种稳健方法。这些结果表明自相关分析有能力检测到原本无法检测到的化合物活性,并表明特定蛋白质的自相关分析可以作为一种强大的筛选工具。