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Ribosomal dimerization factor YfiA is the major protein synthesized after abrupt glucose depletion in Lactococcus lactis

机译:核糖体二聚化因子YfiA是乳酸乳球菌中葡萄糖突然耗尽后合成的主要蛋白质

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We analysed the response of the model bacterium Lactococcus lactis to abrupt depletion of glucose after several generations of exponential growth. Glucose depletion resulted in a drastic drop in the energy charge accompanied by an extremely low GTP level and an almost total arrest of protein synthesis. Strikingly, the cell prioritized the continued synthesis of a few proteins, of which the ribosomal dimerization factor YfiA was the most highly expressed. Transcriptome analysis showed no immediate decrease in total mRNA levels despite the lowered nucleotide pools and only marginally increased levels of the yfiA transcript. Severe up-regulation of genes in the FruR, CcpA, ArgR and AhrC regulons were consistent with a downshift in carbon and energy source. Based upon the results, we suggest that transcription proceeded long enough to record the transcriptome changes from activation of the FruR, CcpA, ArgR and AhrC regulons, while protein synthesis stopped due to an extremely low GTP concentration emerging a few minutes after glucose depletion. The yfiA deletion mutant exhibited a longer lag phase upon replenishment of glucose and a faster death rate after prolonged starvation supporting that YfiA-mediated ribosomal dimerization is important for keeping long-term starved cells viable and competent for growth initiation.
机译:我们分析了几代的指数增长后,模型细菌乳酸乳球菌对葡萄糖突然消耗的反应。葡萄糖的消耗导致能量电荷的急剧下降,同时伴随着极低的GTP水平和几乎全部的蛋白质合成停滞。令人惊讶的是,细胞优先考虑了几种蛋白质的继续合成,其中核糖体二聚因子YfiA的表达最高。转录组分析显示,尽管核苷酸池降低了,但总的mRNA水平却没有立即降低,而yfiA转录本的水平仅略有提高。 FruR,CcpA,ArgR和AhrC调节子中基因的严重上调与碳和能源的下调一致。根据结果​​,我们建议转录进行的时间足够长,以记录FruR,CcpA,ArgR和AhrC调节子的激活导致的转录组变化,而蛋白质合成则由于葡萄糖消耗几分钟后出现的极低的GTP浓度而停止。 yfiA缺失突变体在补充葡萄糖后表现出更长的延迟期,并且在长期饥饿后表现出更快的死亡率,这表明YfiA介导的核糖体二聚化对于保持长期饥饿的细胞具有活力并能够促进生长起重要作用。

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