von der Haar Tobias, Leadsham Jane E, Sauvadet Aimie, Tarrant Daniel, Adam Ilectra S, Saromi Kofo, Laun Peter, Rinnerthaler Mark, Breitenbach-Koller Hannelore, Breitenbach Michael, Tuite Mick F, Gourlay Campbell W
Kent Fungal Group, School of Biosciences, University of Kent, Canterbury CT2 7NJ, UK
Kent Fungal Group, School of Biosciences, University of Kent, Canterbury CT2 7NJ, UK.
Open Biol. 2017 Jan;7(1). doi: 10.1098/rsob.160291.
Life requires the maintenance of molecular function in the face of stochastic processes that tend to adversely affect macromolecular integrity. This is particularly relevant during ageing, as many cellular functions decline with age, including growth, mitochondrial function and energy metabolism. Protein synthesis must deliver functional proteins at all times, implying that the effects of protein synthesis errors like amino acid misincorporation and stop-codon read-through must be minimized during ageing. Here we show that loss of translational accuracy accelerates the loss of viability in stationary phase yeast. Since reduced translational accuracy also reduces the folding competence of at least some proteins, we hypothesize that negative interactions between translational errors and age-related protein damage together overwhelm the cellular chaperone network. We further show that multiple cellular signalling networks control basal error rates in yeast cells, including a ROS signal controlled by mitochondrial activity, and the Ras pathway. Together, our findings indicate that signalling pathways regulating growth, protein homeostasis and energy metabolism may jointly safeguard accurate protein synthesis during healthy ageing.
生命需要在面对倾向于对大分子完整性产生不利影响的随机过程时维持分子功能。这在衰老过程中尤为重要,因为许多细胞功能会随着年龄增长而下降,包括生长、线粒体功能和能量代谢。蛋白质合成必须始终提供功能性蛋白质,这意味着在衰老过程中,诸如氨基酸错掺入和终止密码子通读等蛋白质合成错误的影响必须最小化。在这里,我们表明翻译准确性的丧失会加速静止期酵母活力的丧失。由于翻译准确性降低也会降低至少一些蛋白质的折叠能力,我们推测翻译错误与年龄相关的蛋白质损伤之间的负面相互作用共同压倒了细胞伴侣网络。我们进一步表明,多个细胞信号网络控制酵母细胞中的基础错误率,包括由线粒体活性控制的ROS信号和Ras途径。总之,我们的研究结果表明,调节生长、蛋白质稳态和能量代谢的信号通路可能共同保障健康衰老过程中准确的蛋白质合成。