Hollingsworth Ethan W, Liu Taryn A, Jacinto Sandra H, Chen Cindy X, Alcantara Joshua A, Kvon Evgeny Z
Department of Developmental and Cell Biology, University of California, Irvine, CA 92697, USA.
Medical Scientist Training Program, University of California, Irvine School of Medicine, Irvine, CA 92697, USA.
bioRxiv. 2023 Dec 10:2023.12.10.570890. doi: 10.1101/2023.12.10.570890.
Functional analysis of non-coding variants associated with human congenital disorders remains challenging due to the lack of efficient models. Here we introduce dual-enSERT, a robust Cas9-based two-color fluorescent reporter system which enables rapid, quantitative comparison of enhancer allele activities in live mice of any genetic background. We use this new technology to examine and measure the gain- and loss-of-function effects of enhancer variants linked to limb polydactyly, autism, and craniofacial malformation. By combining dual-enSERT with single-cell transcriptomics, we characterize variant enhancer alleles at cellular resolution, thereby implicating candidate molecular pathways in pathogenic enhancer misregulation. We further show that independent, polydactyly-linked enhancer variants lead to ectopic expression in the same cell populations, indicating shared genetic mechanisms underlying non-coding variant pathogenesis. Finally, we streamline dual-enSERT for analysis in F0 animals by placing both reporters on the same transgene separated by a synthetic insulator. Dual-enSERT allows researchers to go from identifying candidate enhancer variants to analysis of comparative enhancer activity in live embryos in under two weeks.
由于缺乏有效的模型,对与人类先天性疾病相关的非编码变异进行功能分析仍然具有挑战性。在此,我们介绍了双enSERT,这是一种基于Cas9的强大双色荧光报告系统,可在任何遗传背景的活体小鼠中对增强子等位基因活性进行快速、定量比较。我们使用这项新技术来检查和测量与多指畸形、自闭症和颅面畸形相关的增强子变异的功能获得和功能丧失效应。通过将双enSERT与单细胞转录组学相结合,我们在细胞分辨率下对变异增强子等位基因进行了表征,从而揭示了致病性增强子调控异常中的候选分子途径。我们进一步表明,独立的、与多指畸形相关的增强子变异会导致相同细胞群体中的异位表达,这表明非编码变异发病机制背后存在共同的遗传机制。最后,我们通过将两个报告基因置于由合成绝缘子分隔的同一转基因上,简化了双enSERT在F0动物中的分析。双enSERT使研究人员能够在不到两周的时间内从识别候选增强子变异过渡到对活体胚胎中增强子活性的比较分析。