Sánchez Oscar F, Mendonca Agnes, Min Alan, Liu Jichang, Yuan Chongli
Davidson School of Chemical Engineering, Purdue University, 480 Stadium Mall Drive, West Lafayette 47907, Indiana, United States.
Department of Computer Science, Purdue University, West Lafayette 47907, Indiana, United States.
ACS Omega. 2019 Aug 1;4(8):13250-13259. doi: 10.1021/acsomega.9b01413. eCollection 2019 Aug 20.
H3K9me3 (methylation of lysine 9 of histone H3) is an epigenetic modification that acts as a repressor mark. Several diseases, including cancers and neurological disorders, have been associated with aberrant changes in H3K9me3 levels. Different tools have been developed to enable detection and quantification of H3K9me3 levels in cells. Most techniques, however, lack live cell compatibility. To address this concern, we have engineered recombinant protein sensors for probing H3K9me3 in situ. A heterodimeric sensor containing a chromodomain and chromo shadow domain from HP1a was found to be optimal in recognizing H3K9me3 and exhibited similar spatial resolution to commercial antibodies. Our sensor offers similar quantitative accuracy in characterizing changes in H3K9me3 compared to antibodies but claims single cell resolution. The sensor was applied to evaluate changes in H3K9me3 responding to environmental chemical atrazine (ATZ). ATZ was found to result in significant reductions in H3K9me3 levels after 24 h of exposure. Its impact on the distribution of H3K9me3 among cell populations was also assessed and found to be distinctive. We foresee the application of our sensors in multiple toxicity and drug-screening applications.
H3K9me3(组蛋白H3赖氨酸9位点甲基化)是一种表观遗传修饰,起抑制标记的作用。包括癌症和神经疾病在内的多种疾病都与H3K9me3水平的异常变化有关。人们已经开发出不同工具来检测和定量细胞中的H3K9me3水平。然而,大多数技术缺乏活细胞兼容性。为了解决这一问题,我们设计了用于原位探测H3K9me3的重组蛋白传感器。发现一种包含来自HP1a的色域和色影域的异二聚体传感器在识别H3K9me3方面表现最佳,并且与商业抗体具有相似的空间分辨率。与抗体相比,我们的传感器在表征H3K9me3变化时具有相似的定量准确性,但具有单细胞分辨率。该传感器被用于评估对环境化学物质阿特拉津(ATZ)的反应中H3K9me3的变化。发现ATZ在暴露24小时后会导致H3K9me3水平显著降低。还评估了其对细胞群体中H3K9me3分布的影响,发现具有独特性。我们预计我们的传感器将应用于多种毒性和药物筛选应用中。