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mTORC1和ATF4信号通路在CDK4/6抑制剂诱导的CHO细胞重组蛋白生产中具有显著影响。

Significant impact of mTORC1 and ATF4 pathways in CHO cell recombinant protein production induced by CDK4/6 inhibitor.

作者信息

Chang Meiping, Huhn Steven, Nelson Luke, Betenbaugh Michael, Du Zhimei

机构信息

Process Cell Sciences, Biologics Process R&D, Merck & Co., Inc., Kenilworth, New Jersey, USA.

Department of Chemical and Biomolecular Engineering, Johns Hopkins University, Baltimore, Maryland, USA.

出版信息

Biotechnol Bioeng. 2022 May;119(5):1189-1206. doi: 10.1002/bit.28050. Epub 2022 Feb 17.

Abstract

The CDK4/6 inhibitor has been shown to increase recombinant protein productivity in Chinese hamster ovary (CHO) cells. Therefore, we investigated the mechanism that couples cell-cycle inhibitor (CCI) treatment with protein productivity utilizing proteomics and phosphoproteomics. We identified mTORC1 as a critical early signaling event that preceded boosted productivity. Following CCI treatment, mTOR exhibited a transient increase in phosphorylation at a novel site that is also conserved in humans and mouse. Upstream of mTORC1, increased phosphorylation of AKT1S1 and decreased phosphorylation of RB1 may provide molecular links between CDK4/6 inhibition and mTORC1. Downstream, increased EIF4EBP1 phosphorylation was observed, which can mediate cap-dependent translation. In addition, the collective effect of increased phosphorylation of RPS6, increased phosphorylation of regulators of RNA polymerase I, and increased protein expression in the transfer RNA-aminoacylation pathway may contribute to enhancing the translational apparatus for increased productivity. In concert, an elevated stress response via GCN2/EIF2AK4-ATF4 axis persisted over the treatment course, which may link mTOR to downstream responses including the unfolded protein response and autophagy to enhance proper protein folding and secretion. Together, this comprehensive proteomics and phosphoproteomics characterization of CCI-treated CHO cells offers insights into understanding multiple aspects of signaling events resulting from CDK4/CDK6 inhibition.

摘要

CDK4/6抑制剂已被证明可提高中国仓鼠卵巢(CHO)细胞中重组蛋白的产量。因此,我们利用蛋白质组学和磷酸化蛋白质组学研究了将细胞周期抑制剂(CCI)处理与蛋白质产量相关联的机制。我们确定mTORC1是产量提高之前的关键早期信号事件。在CCI处理后,mTOR在一个新位点的磷酸化表现出短暂增加,该位点在人类和小鼠中也保守。在mTORC1上游,AKT1S1磷酸化增加和RB1磷酸化减少可能提供了CDK4/6抑制与mTORC1之间的分子联系。在下游,观察到EIF4EBP1磷酸化增加,其可介导帽依赖性翻译。此外,RPS6磷酸化增加、RNA聚合酶I调节因子磷酸化增加以及转运RNA氨酰化途径中蛋白质表达增加的共同作用可能有助于增强翻译装置以提高产量。同时,通过GCN2/EIF2AK4-ATF4轴的应激反应增强在整个处理过程中持续存在,这可能将mTOR与包括未折叠蛋白反应和自噬在内的下游反应联系起来,以增强正确的蛋白质折叠和分泌。总之,对经CCI处理的CHO细胞进行的这种全面的蛋白质组学和磷酸化蛋白质组学表征为理解CDK4/CDK6抑制导致的信号事件的多个方面提供了见解。

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