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丁酰化 ManNAc 类似物可提高中国仓鼠卵巢细胞中的蛋白表达。

Butyrated ManNAc analog improves protein expression in Chinese hamster ovary cells.

机构信息

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

Department of Biomedical Engineering, Johns Hopkins University, Baltimore, Maryland.

出版信息

Biotechnol Bioeng. 2018 Jun;115(6):1531-1541. doi: 10.1002/bit.26560. Epub 2018 Mar 14.

Abstract

The chemical additive sodium butyrate (NaBu) has been applied in cell culture media as a direct and convenient method to increase the protein expression in Chinese hamster ovary (CHO) and other mammalian cells. In this study, we examined an alternative chemical additive, 1,3,4-O-Bu ManNAc, for its effect on recombinant protein production in CHO. Supplementation with 1,3,4-O-Bu ManNAc for two stable CHO cell lines, expressing human erythropoietin or IgG, enhanced protein expression for both products with negligible impact on cell growth, viability, glucose utilization, and lactate accumulation. In contrast, sodium butyrate treatment resulted in a ∼20% decrease in maximal viable cell density and ∼30% decrease in cell viability at the end of cell cultures compared to untreated or 1,3,4-O-Bu ManNAc treated CHO cell lines for both products. While NaBu treatment enhanced product yields more than the 1,3,4-O-Bu ManNAc treatment, the NaBu treated cells also exhibited higher levels of caspase 3 positive cells using microscopy analysis. Furthermore, the mRNA levels of four cell apoptosis genes (Cul2, BAK, BAX, and BCL2L11) were up-regulated more in sodium butyrate treated wild-type, erythropoietin, or IgG expressing CHO-K1 cell lines while most of the mRNA levels of apoptosis genes in 1,3,4-O-Bu ManNAc treated cell lines remained equal or increased only slightly compared to the levels in untreated CHO cell lines. Finally, lectin blot analysis revealed that the 1,3,4-O-Bu ManNAc-treated cells displayed higher relative sialylation levels on recombinant EPO, consistent with the effect of the ManNAc component of this additive, compared to control while NaBu treatment led to lower sialylation levels than control, or 1,3,4-O-Bu ManNAc-treatment. These findings demonstrate that 1,3,4-O-Bu ManNAc has fewer negative effects on cell cytotoxicity and apoptosis, perhaps as a result of a more deliberate uptake and release of the butyrate compounds, while simultaneously increasing the expression of multiple recombinant proteins, and improving the glycosylation characteristics when applied at comparable molarity levels to NaBu. Thus, 1,3,4-O-Bu ManNAc represents a highly promising media additive alternative in cell culture for improving protein yields without sacrificing cell mass and product quality in future bioproduction processes.

摘要

化学添加剂丁酸钠(NaBu)已被应用于细胞培养基中,作为一种直接且方便的方法来提高中国仓鼠卵巢(CHO)和其他哺乳动物细胞中的蛋白质表达。在这项研究中,我们研究了另一种化学添加剂 1,3,4-O-Bu ManNAc,以评估其对 CHO 中重组蛋白生产的影响。在两个稳定的 CHO 细胞系中,添加 1,3,4-O-Bu ManNAc 可分别提高人红细胞生成素或 IgG 的蛋白表达,而对细胞生长、活力、葡萄糖利用和乳酸积累几乎没有影响。相比之下,与未处理或 1,3,4-O-Bu ManNAc 处理的 CHO 细胞系相比,丁酸钠处理会导致两种产品的最大活细胞密度降低约 20%,细胞活力在细胞培养结束时降低约 30%。虽然 NaBu 处理比 1,3,4-O-Bu ManNAc 处理更能提高产物产量,但用显微镜分析发现,NaBu 处理的细胞中 caspase 3 阳性细胞的水平也更高。此外,在野生型、红细胞生成素或 IgG 表达的 CHO-K1 细胞系中,四种细胞凋亡基因(Cul2、BAK、BAX 和 BCL2L11)的 mRNA 水平在丁酸钠处理的细胞系中上调更多,而 1,3,4-O-Bu ManNAc 处理的细胞系中大多数凋亡基因的 mRNA 水平与未处理的 CHO 细胞系中的水平相等或仅略有增加。最后,凝集素印迹分析显示,与对照相比,1,3,4-O-Bu ManNAc 处理的细胞在重组 EPO 上显示出更高的相对唾液酸化水平,这与该添加剂的 ManNAc 成分的作用一致,而 NaBu 处理导致的唾液酸化水平低于对照或 1,3,4-O-Bu ManNAc 处理。这些发现表明,1,3,4-O-Bu ManNAc 对细胞细胞毒性和细胞凋亡的负面影响较小,这可能是由于丁酸化合物的摄取和释放更有针对性,同时提高了多种重组蛋白的表达,并改善了糖基化特性,在可比摩尔浓度下应用于 NaBu。因此,1,3,4-O-Bu ManNAc 是一种很有前途的细胞培养培养基添加剂替代品,可在不牺牲细胞质量和产品质量的情况下提高生物生产过程中的蛋白产量。

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