Department of Cell Biology, UT Southwestern Medical Center, 6000 Harry Hines Blvd., Dallas, TX 75390, USA.
Department of Cell Biology, UT Southwestern Medical Center, 6000 Harry Hines Blvd., Dallas, TX 75390, USA; Paul L. Foster School of Medicine, Texas Tech University Health Sciences Center, 5001 El Paso Dr., El Paso, TX 79905, USA.
Cell Rep. 2020 Dec 1;33(9):108446. doi: 10.1016/j.celrep.2020.108446.
Isogenic cells manifest distinct cellular fates for a single stress; however, the nongenetic mechanisms driving such fates remain poorly understood. Here, we implement a robust multi-channel live-cell imaging approach to uncover noncanonical factors governing cell fate. We show that in response to acute glucose removal (AGR), budding yeast undergoes distinct fates, becoming either quiescent or senescent. Senescent cells fail to resume mitotic cycles following glucose replenishment but remain responsive to nutrient stimuli. Whereas quiescent cells manifest starvation-induced adaptation, senescent cells display perturbed endomembrane trafficking and defective nucleus-vacuole junction (NVJ) expansion. Surprisingly, senescence occurs even in the absence of lipid droplets. Importantly, we identify the nutrient-sensing kinase Rim15 as a key biomarker predicting cell fates before AGR stress. We propose that isogenic yeast challenged with acute nutrient shortage contains determinants influencing post-stress fate and demonstrate that specific nutrient signaling, stress response, trafficking, and inter-organelle biomarkers are early indicators for long-term fate outcomes.
同基因细胞对单一应激表现出不同的细胞命运;然而,驱动这种命运的非遗传机制仍知之甚少。在这里,我们采用了一种强大的多通道活细胞成像方法来揭示控制细胞命运的非典型因素。我们表明,在急性葡萄糖去除(AGR)后,出芽酵母经历不同的命运,成为静止或衰老。衰老细胞在葡萄糖补充后无法恢复有丝分裂周期,但仍然对营养刺激有反应。而静止细胞表现出饥饿诱导的适应性,衰老细胞则表现出内质网运输紊乱和核液泡连接(NVJ)扩张缺陷。令人惊讶的是,即使没有脂滴,衰老也会发生。重要的是,我们发现营养感应激酶 Rim15 是 AGR 应激前预测细胞命运的关键生物标志物。我们提出,受到急性营养缺乏挑战的同基因酵母包含影响应激后命运的决定因素,并表明特定的营养信号、应激反应、运输和细胞器间生物标志物是长期命运结果的早期指标。