A significant challenge of functional genomics is to develop methods for genome-scale acquisition and analysis of cell biological data. Here, we present an integrated method that combines genome-wide genetic perturbation of Saccharomyces cerevisiae with high-content screening to facilitate the genetic description of sub-cellular structures and compartment morphology. As proof of principle, we used a Rad52-GFP marker to examine DNA damage foci in â¼20 million single cells from â¼5,000 different mutant backgrounds in the context of selected genetic or chemical perturbations. Phenotypes were classified using a machine learning-based automated image analysis pipeline. 345 mutants were identified that had elevated numbers of DNA damage foci, almost half of which were identified only in sensitized backgrounds. Subsequent analysis of Vid22, a protein implicated in the DNA damage response, revealed that it acts together with the Sgs1 helicase at sites of DNA damage and preferentially binds G-quadruplex regions of the genome. This approach is extensible to numerous other cell biological markers and experimental systems.
Exploring Quantitative Yeast Phenomics with Single-Cell Analysis of DNA Damage Foci.
利用单细胞DNA损伤灶分析探索酵母表型组学的定量研究
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作者:Styles Erin B, Founk Karen J, Zamparo Lee A, Sing Tina L, Altintas Dogus, Ribeyre Cyril, Ribaud Virginie, Rougemont Jacques, Mayhew David, Costanzo Michael, Usaj Matej, Verster Adrian J, Koch Elizabeth N, Novarina Daniele, Graf Marco, Luke Brian, Muzi-Falconi Marco, Myers Chad L, Mitra Robi David, Shore David, Brown Grant W, Zhang Zhaolei, Boone Charles, Andrews Brenda J
| 期刊: | Cell Systems | 影响因子: | 7.700 |
| 时间: | 2016 | 起止号: | 2016 Sep 28; 3(3):264-277 |
| doi: | 10.1016/j.cels.2016.08.008 | 种属: | Yeast |
| 研究方向: | 细胞生物学 | ||
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