CSIR-Institute of Genomics and Integrative Biology, Delhi, 110025, India.
Academy of Scientific and Innovative Research, Coordination Office, CSIR-Human Resource Development Centre Campus, Ghaziabad, 201002, India.
Cell Mol Life Sci. 2019 Apr;76(8):1605-1621. doi: 10.1007/s00018-019-03013-8. Epub 2019 Jan 25.
The proteostasis network (PN) comprises a plethora of proteins that are dedicated to aid in protein folding and maintenance; some with overlapping functions. Despite this, there are multiple pathophysiological states associated with depletion of chaperones. This is counter-intuitive, assuming cells have the ability to re-program transcriptional outputs in accordance with its proteostasic limitations. Here, we have used S. cerevisiae to understand how cells respond to different types of proteostasis impairments. We monitored the proteostasis status and transcriptome of single deletions of fourteen different Protein Quality Control (PQC) genes. In most cases, cellular response did not activate proteostasis components or pathways that could either complement the function of the missing PQC gene or restore proteostasis. Over-expression of alternate machineries could restore part of the proteostasis defect in two representative PQC gene deletion strains. We posit that S. cerevisiae inherently lacks the ability to sense and respond optimally to defects in proteostasis caused due to deletion of specific PQC components.
蛋白质稳态网络(PN)包含大量专门用于辅助蛋白质折叠和维持的蛋白质;其中一些具有重叠的功能。尽管如此,仍有多种与伴侣蛋白耗竭相关的病理生理状态。这与直觉相悖,因为细胞应该有能力根据其蛋白质稳态的限制重新编程转录产物。在这里,我们使用酿酒酵母来了解细胞如何对不同类型的蛋白质稳态损伤做出反应。我们监测了十四个不同蛋白质质量控制(PQC)基因的单个缺失的蛋白质稳态状态和转录组。在大多数情况下,细胞反应没有激活能够补充缺失的 PQC 基因功能或恢复蛋白质稳态的蛋白质稳态组件或途径。在两种具有代表性的 PQC 基因缺失菌株中,替代机制的过表达可以部分恢复蛋白质稳态缺陷。我们假设酿酒酵母本质上缺乏感知和对由于特定 PQC 成分缺失导致的蛋白质稳态缺陷做出最佳反应的能力。