Unidad de Genómica Avanzada (Langebio), Centro de Investigación y de Estudios Avanzados, 36824 Irapuato, Guanajuato, Mexico.
Departamento de Ingeniería Genética, Unidad Irapuato, Centro de Investigación y de Estudios Avanzados, 36824 Irapuato, Guanajuato, Mexico.
G3 (Bethesda). 2023 Sep 30;13(10). doi: 10.1093/g3journal/jkad153.
Subtelomeric gene silencing is the negative transcriptional regulation of genes located close to telomeres. This phenomenon occurs in a variety of eukaryotes with salient physiological implications, such as cell adherence, virulence, immune-system escape, and ageing. The process has been widely studied in the budding yeast Saccharomyces cerevisiae, where genes involved in this process have been identified mostly on a gene-by-gene basis. Here, we introduce a quantitative approach to study gene silencing, that couples the classical URA3 reporter with GFP monitoring, amenable to high-throughput flow cytometry analysis. This dual silencing reporter was integrated into several subtelomeric loci in the genome, where it showed a gradual range of silencing effects. By crossing strains with this dual reporter at the COS12 and YFR057W subtelomeric query loci with gene-deletion mutants, we carried out a large-scale forward screen for potential silencing factors. The approach was replicable and allowed accurate detection of expression changes. Results of our comprehensive screen suggest that the main players influencing subtelomeric silencing were previously known, but additional potential factors underlying chromatin conformation are involved. We validate and report the novel silencing factor LGE1, a protein with unknown molecular function required for histone H2B ubiquitination. Our strategy can be readily combined with other reporters and gene perturbation collections, making it a versatile tool to study gene silencing at a genome-wide scale.
端粒外基因沉默是指靠近端粒的基因的负转录调控。这种现象发生在各种真核生物中,具有明显的生理意义,如细胞黏附、毒力、免疫系统逃逸和衰老。在出芽酵母酿酒酵母中,已经对该过程进行了广泛的研究,其中该过程涉及的基因主要是逐个鉴定的。在这里,我们介绍了一种定量研究基因沉默的方法,该方法将经典的 URA3 报告基因与 GFP 监测相结合,适用于高通量流式细胞术分析。该双沉默报告基因整合到基因组中的几个端粒外基因座中,在这些基因座中显示出逐渐变化的沉默效果。通过将带有这种双报告基因的菌株与 COS12 和 YFR057W 端粒外查询基因座的基因缺失突变体进行杂交,我们进行了大规模的正向筛选,以寻找潜在的沉默因子。该方法具有可重复性,并能准确检测表达变化。我们全面筛选的结果表明,影响端粒外沉默的主要因素是先前已知的,但也涉及潜在的影响染色质构象的因素。我们验证并报告了一种新的沉默因子 LGE1,它是一种具有未知分子功能的蛋白质,需要组蛋白 H2B 的泛素化。我们的策略可以很容易地与其他报告基因和基因扰动集合结合使用,使其成为研究全基因组范围内基因沉默的通用工具。