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LC-MS/MS-based quantitative proteomic and phosphoproteomic analysis of CHO-K1 cells adapted to growth in glutamine-free media

机译:基于LC-MS / MS的定量蛋白质组学和CHO-K1细胞的磷蛋白蛋白酶分析,适应于无谷氨酰胺介质的生长

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Objectives This study aims to provide insights into the molecular mechanisms underlying adaptation of CHO-K1 cells to growth in glutamine-free media and potentially identifying critical signalling proteins and pathways involved in this phenotype. Results A CHO-K1 cell line adapted to growth in glutamine-free media was established using a straightforward one-step glutamine reduction strategy. The adapted cell line had a comparable phenotype to the parental cells in terms of cell growth and viability. Global quantitative proteomic and phosphoproteomic analysis was carried out to compare the cells adapted to growth in glutamine-free media to parental cells grown in media containing 8 mMl-glutamine. The adaptation process was accompanied by changes in proteins associated with cytoskeleton rearrangement and mRNA splicing as evidenced via functional analysis of 194 differentially expressed proteins between the two cell lines. 434 phosphoproteins with altered abundance were also identified as a result of adaptation tol-glutamine-free conditions with an associated enrichment of pathways associated with MAPK and calcium signalling. Conclusions This work provides a comprehensive proteomic and phosphoproteomic analysis of protein expression changes after adaptation to glutamine-free growth conditions highlighting critical pathways to consider in the rational design of improved feeding strategies or in cell line engineering to improve bioprocess phenotypes.
机译:目的本研究旨在为CHO-K1细胞适应谷氨酰胺介质的生长以及潜在地识别该表型中涉及的关键信号蛋白和途径的分子机制提供洞察力。结果采用直接的一步一步谷氨酰胺还原策略建立适应谷氨酰胺介质生长的CHO-K1细胞系。在细胞生长和活力方面,所适应的细胞系对亲本细胞具有可比表型。进行全局定量蛋白质组学和磷蛋白蛋白酶分析,以将适应于无谷氨酰胺介质的生长的细胞与含有8mML-谷氨酰胺的培养基中生长的亲本细胞。适应过程伴随着与细胞骨架重排和mRNA剪接相关的蛋白质的变化,如通过194个细胞系之间的差异表达蛋白的功能分析所证明的。还鉴定了具有改变的丰度的磷蛋白,其适应性甲谷胺的条件与与MAPK和钙信号传导相关的途径相关的富集。结论这项工作提供了全面的蛋白质组学和磷蛋白质表达改变后蛋白质表达改变,其适应无谷氨酰胺的生长条件,突出了在改进的饲养策略或细胞系工程中的理性设计中考虑的关键途径,以改善生物过程能量。

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