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Characterization of differentiated quiescent and nonquiescent cells in yeast stationary-phase cultures

机译:酵母固定相培养物中分化的静态和非静态细胞的表征

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Cells in glucose-limited Saccharomyces cerevisiae cultures differentiate into quiescent ( Q) and nonquiescent ( NQ) fractions before entering stationary phase. To understand this differentiation, Q and NQ cells from 101 deletion-mutant strains were tested for viability and reproductive capacity. Eleven mutants that affected one or both phenotypes in Q or NQ fractions were identified. NQ fractions exhibit a high level of petite colonies, and nine mutants affecting this phenotype were identified. Microarray analysis revealed >1300 mRNAs distinguished Q from NQ fractions. Q cell-specific mRNAs encode proteins involved in membrane maintenance, oxidative stress response, and signal transduction. NQ-cell mRNAs, consistent with apoptosis in these cells, encode proteins involved in Ty-element transposition and DNA recombination. More than 2000 protease-released mRNAs were identified only in Q cells, consistent with these cells being physiologically poised to respond to environmental changes. Our results indicate that Q and NQ cells differentiate significantly, with Q cells providing genomic stability and NQ cells providing nutrients to Q cells and a regular source of genetic diversity through mutation and transposition. These studies are relevant to chronological aging, cell cycle, and genome evolution, and they provide insight into complex responses that even simple organisms have to starvation.
机译:葡萄糖受限的酿酒酵母培养物中的细胞在进入固定相之前会分化成静态(Q)和非静态(NQ)组分。为了了解这种分化,测试了来自101个缺失突变株的Q和NQ细胞的生存力和生殖能力。鉴定了11个影响Q或NQ部分中一种或两种表型的突变体。 NQ馏分显示出高水平的娇小菌落,并确定了影响该表型的9个突变体。微阵列分析显示> 1300个mRNA将Q与NQ组分区分开。 Q细胞特异的mRNA编码参与膜维持,氧化应激反应和信号转导的蛋白质。 NQ细胞mRNA,与这些细胞中的凋亡一致,编码参与Ty元素转座和DNA重组的蛋白质。仅在Q细胞中鉴定出2000多种蛋白酶释放的mRNA,这与这些细胞在生理上准备对环境变化作出反应一致。我们的结果表明,Q和NQ细胞分化显着,其中Q细胞提供基因组稳定性,NQ细胞为Q细胞提供营养,并通过突变和转座提供常规的遗传多样性。这些研究与按时间顺序进行的衰老,细胞周期和基因组进化有关,它们提供了对复杂反应的洞察力,即使是简单的生物也要饥饿。

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