Institut Pasteur, Inria, Université Paris Cité, 75015, Paris, France.
Lesaffre International, 101 rue de Menin, Marcq-en-Baroeul, France.
Nat Commun. 2023 May 25;14(1):3028. doi: 10.1038/s41467-023-38807-9.
Optimizing the production of recombinant proteins is a problem of major industrial and pharmaceutical importance. Secretion of the protein by the host cell considerably simplifies downstream purification processes. However, for many proteins, this is also the limiting production step. Current solutions involve extensive engineering of the chassis cell to facilitate protein trafficking and limit protein degradation triggered by excessive secretion-associated stress. Here, we propose instead a regulation-based strategy in which induction is dynamically adjusted to an optimal strength based on the current stress level of the cells. Using a small collection of hard-to-secrete proteins, a bioreactor-based platform with automated cytometry measurements, and a systematic assay to quantify secreted protein levels, we demonstrate that the secretion sweet spot is indicated by the appearance of a subpopulation of cells that accumulate high amounts of proteins, decrease growth, and face significant stress, that is, experience a secretion burnout. In these cells, adaptations capabilities are overwhelmed by a too strong production. Using these notions, we show for a single-chain antibody variable fragment that secretion levels can be improved by 70% by dynamically keeping the cell population at optimal stress levels using real-time closed-loop control.
优化重组蛋白的生产是一个具有重要工业和制药意义的问题。蛋白质由宿主细胞分泌可以大大简化下游的纯化过程。然而,对于许多蛋白质来说,这也是限制生产的步骤。目前的解决方案涉及对底盘细胞进行广泛的工程改造,以促进蛋白质运输,并限制因过度分泌相关应激而引发的蛋白质降解。在这里,我们提出了一种基于调控的策略,根据细胞当前的应激水平,动态调整诱导强度至最佳水平。我们使用了一小部分难以分泌的蛋白质,一个带有自动化细胞仪测量的基于生物反应器的平台,以及一个系统的测定法来定量分泌蛋白水平,证明了分泌的最佳点是由积累大量蛋白质、降低生长速度和面临显著应激(即经历分泌疲劳)的细胞亚群出现来指示的。在这些细胞中,由于生产过于强烈,适应能力被压倒。利用这些概念,我们展示了对于单链抗体可变片段,通过使用实时闭环控制,将细胞群保持在最佳应激水平,分泌水平可以提高 70%。