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建立对N-乙酰甘露糖胺(ManNAc)类似物具有抗性的细胞系,作为唾液酸工程应用的改良宿主。

Establishment of N-acetylmannosamine (ManNAc) analogue-resistant cell lines as improved hosts for sialic acid engineering applications.

作者信息

Kim Eun Jeong, Jones Mark B, Rhee Jun Kyu, Sampathkumar Srinivasa-Gopalan, Yarema Kevin J

机构信息

Whitaker Biomedical Engineering Institute, The Johns Hopkins University, 3400 North Charles Street, Baltimore, Maryland 21218, USA.

出版信息

Biotechnol Prog. 2004 Nov-Dec;20(6):1674-82. doi: 10.1021/bp049841q.

Abstract

Metabolic substrate-based sialic acid engineering techniques, where exogenously supplied N-acetylmannosamine (ManNAc) analogues are utilized by the sialic acid biosynthetic pathway, allow the cell surface to be endowed with novel physical and chemical properties and show promise for increasing the quality of recombinant glycoproteins. The in vitro toxicity of many ManNAc analogues, however, hinders the large-scale adoption of this technology. In this study, we used a selection strategy where cells were subjected to progressively higher levels of ManNAc analogues to establish novel cell lines that showed decreased sensitivity to analogue-induced in vitro toxicity. The decreased sensitivity to sugar analogue-induced apoptosis, demonstrated by the Annexin V-FITC detection method and DNA fragmentation assays, corresponded to increased sialic acid production in the resistant cell lines. The ManNAc analogue-resistant cell lines exhibited cross-resistance to apoptosis induced by staurosporine and an apoptosis-activating Fas antibody. We propose that the selection strategy employed to develop these novel cell lines, which serve as superior hosts for substrate-based sialic acid engineering applications, will generally apply to the development of host cell lines for biotechnology applications.

摘要

基于代谢底物的唾液酸工程技术利用唾液酸生物合成途径对外源供应的N-乙酰甘露糖胺(ManNAc)类似物进行利用,使细胞表面具有新的物理和化学性质,并有望提高重组糖蛋白的质量。然而,许多ManNAc类似物的体外毒性阻碍了该技术的大规模应用。在本研究中,我们采用了一种筛选策略,使细胞逐渐暴露于更高水平的ManNAc类似物中,以建立对类似物诱导的体外毒性敏感性降低的新型细胞系。通过膜联蛋白V-FITC检测方法和DNA片段化分析证明,对糖类似物诱导的细胞凋亡敏感性降低与抗性细胞系中唾液酸产量增加相对应。ManNAc类似物抗性细胞系对星形孢菌素和凋亡激活Fas抗体诱导的细胞凋亡表现出交叉抗性。我们提出,用于开发这些新型细胞系的筛选策略,可作为基于底物的唾液酸工程应用的优质宿主,通常适用于生物技术应用中宿主细胞系的开发。

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