Isogenic cells show a large degree of variability in growth rate, even when cultured in the same environment. Such cell-to-cell variability in growth can alter sensitivity to antibiotics, chemotherapy and environmental stress. To characterize transcriptional differences associated with this variability, we have developed a method--FitFlow--that enables the sorting of subpopulations by growth rate. The slow-growing subpopulation shows a transcriptional stress response, but, more surprisingly, these cells have reduced RNA polymerase fidelity and exhibit a DNA damage response. As DNA damage is often caused by oxidative stress, we test the addition of an antioxidant, and find that it reduces the size of the slow-growing population. More generally, we find a significantly altered transcriptome in the slow-growing subpopulation that only partially resembles that of cells growing slowly due to environmental and culture conditions. Slow-growing cells upregulate transposons and express more chromosomal, viral and plasmid-borne transcripts, and thus explore a larger genotypic--and so phenotypic--space.
Slow-growing cells within isogenic populations have increased RNA polymerase error rates and DNA damage.
同源群体中生长缓慢的细胞 RNA 聚合酶错误率和 DNA 损伤增加
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作者:van Dijk David, Dhar Riddhiman, Missarova Alsu M, Espinar Lorena, Blevins William R, Lehner Ben, Carey Lucas B
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2015 | 起止号: | 2015 Aug 13; 6:7972 |
| doi: | 10.1038/ncomms8972 | 研究方向: | 细胞生物学 |
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