MRC Protein Phosphorylation and Ubiquitylation Unit, School of Life Sciences, University of Dundee, Dundee, UK.
EMBO J. 2023 Dec 11;42(24):e113240. doi: 10.15252/embj.2022113240. Epub 2023 Nov 20.
Protein requirements of eukaryotic cells are ensured by proteostasis, which is mediated by tight control of TORC1 activity. Upon TORC1 inhibition, protein degradation is increased and protein synthesis is reduced through inhibition of translation initiation to maintain cell viability. Here, we show that the ribosome-associated complex (RAC)/Ssb chaperone system, composed of the HSP70 chaperone Ssb and its HSP40 co-chaperone Zuo1, is required to maintain proteostasis and cell viability under TORC1 inhibition in Saccharomyces cerevisiae. In the absence of Zuo1, translation does not decrease in response to the loss of TORC1 activity. A functional interaction between Zuo1 and Ssb is required for proper translational control and proteostasis maintenance upon TORC1 inhibition. Furthermore, we have shown that the rapid degradation of eIF4G following TORC1 inhibition is mediated by autophagy and is prevented in zuo1Δ cells, contributing to decreased survival in these conditions. We found that autophagy is defective in zuo1Δ cells, which impedes eIF4G degradation upon TORC1 inhibition. Our findings identify an essential role for RAC/Ssb in regulating translation in response to changes in TORC1 signalling.
真核细胞的蛋白质需求是通过蛋白质稳态来保证的,而蛋白质稳态是通过严格控制 TORC1 活性来实现的。当 TORC1 受到抑制时,通过抑制翻译起始来增加蛋白质降解和减少蛋白质合成,从而维持细胞活力。在这里,我们表明,在酿酒酵母中,由 HSP70 伴侣 Ssb 及其 HSP40 共伴侣 Zuo1 组成的核糖体相关复合物(RAC)/Ssb 伴侣系统对于在 TORC1 抑制下维持蛋白质稳态和细胞活力是必需的。在没有 Zuo1 的情况下,翻译不会响应 TORC1 活性的丧失而减少。Zuo1 和 Ssb 之间的功能相互作用对于 TORC1 抑制时的适当翻译控制和蛋白质稳态维持是必需的。此外,我们已经表明,TORC1 抑制后 eIF4G 的快速降解是由自噬介导的,并且在 zuo1Δ 细胞中被阻止,这导致在这些条件下的存活率降低。我们发现 zuo1Δ 细胞中的自噬缺陷,这阻碍了 TORC1 抑制后 eIF4G 的降解。我们的研究结果确定了 RAC/Ssb 在调节翻译以响应 TORC1 信号变化方面的重要作用。