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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Development of quenching and washing protocols for quantitative intracellular metabolite analysis of uninfected and baculovirus-infected insect cells
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Development of quenching and washing protocols for quantitative intracellular metabolite analysis of uninfected and baculovirus-infected insect cells

机译:开发用于未感染和杆状病毒感染的昆虫细胞定量细胞内代谢物分析的淬灭和洗涤方案

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Metabolomics refer to the global analysis of small molecule metabolites in a biological system, and can be a powerful tool to elucidate and optimize cellular processes, particularly when integrated into a systems biology framework. Determining the endometabolome in cultured animal cells is especially challenging, due to the conflicting demands for rapid quenching of metabolism and retention of membrane integrity, while cells are separated from the complex medium. The challenge is magnified in virus infected cells due to increased membrane fragility. This paper describes an effective methodology for quantitative intracellular metabolite analysis of the baculovirus-insect cell expression system, an important platform for the production of heterologous proteins and baculovirus-based biopesticides. These two applications were represented by . Spodoptera frugiperda (Sf9) and . Helicoverpa zea (HzAM1) cells infected with recombinant . Autographa californica and wild-type . Helicoverpa armigera nucleopolyhedroviruses (AcMNPV and HaSNPV), respectively. Specifically, an ice-cold quenching solution comprising 1.1% w/v NaCl and 0.2% w/v Pluronic? F-68 (NaCl. +. P) was found to be efficacious in preserving cell viability and minimizing cell leakage during quenching and centrifugation-based washing procedures (prior to extraction using cold 50% v/v acetonitrile). Good recoveries of intracellular adenosine triphosphate, total adenosine phosphates and amino acids were obtained after just one wash step, for both uninfected and infected insect cells. The ability to implement wash steps is critical, as insect cell media are metabolites-rich, while infected insect cells are much more fragile than their uninfected counterparts. Hence, a promising methodology has been developed to facilitate endometabolomic analysis of insect cell-baculovirus systems for bioprocess optimization.
机译:代谢组学是指对生物系统中小分子代谢物的全局分析,并且可以成为阐明和优化细胞过程的有力工具,尤其是整合到系统生物学框架中时。由于在将细胞与复杂培养基分离的同时,对代谢的快速淬灭和保留膜完整性的需求存在冲突,因此确定培养的动物细胞中的内代谢组尤其具有挑战性。由于膜脆性增加,挑战在病毒感染的细胞中被放大。本文介绍了一种有效的方法,用于定量分析杆状病毒-昆虫细胞表达系统的细胞内代谢产物,这是生产异源蛋白和基于杆状病毒的生物农药的重要平台。这两个应用程序由表示。草地夜蛾(Sod9 frugiperda)(Sf9)和。重组Helicoverpa zea(HzAM1)细胞感染。加利福尼亚州的Autographa californica和野生型。棉铃虫核多角体病毒(AcMNPV和HaSNPV)分别。具体地,一种冰冷的淬灭溶液,其包含1.1%w / v的NaCl和0.2%w / v的Pluronic?发现F-68(NaCl。+。P)在淬灭和基于离心的洗涤程序(使用冷的50%v / v乙腈提取之前)过程中能有效保持细胞活力并使细胞泄漏最小化。对于未感染和感染的昆虫细胞,仅一步洗涤即可获得细胞内三磷酸腺苷,总磷酸腺苷和氨基酸的良好回收率。执行清洗步骤的能力至关重要,因为昆虫细胞培养基富含代谢产物,而被感染的昆虫细胞比未感染的昆虫细胞脆弱得多。因此,已经开发了一种有前途的方法,以促进昆虫细胞-杆状病毒系统的内代谢分析,以进行生物过程优化。

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