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首页> 外文期刊>Protein engineering design & selection: PEDS >Tag-on-Demand: exploiting amber codon suppression technology for the enrichment of high-expressing membrane protein cell lines
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Tag-on-Demand: exploiting amber codon suppression technology for the enrichment of high-expressing membrane protein cell lines

机译:按需标签:利用琥珀色密码子抑制技术,用于富含高新膜蛋白细胞系的富集

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摘要

Membrane proteins play key roles in the evolution of numerous diseases and as a result have become the most dominant class of targets for therapeutic intervention. However, their poor expression and detection oftentimes prohibit drug discovery and screening efforts. Herein, we have developed an approach, named 'Tag-on-Demand' that exploits amber suppression to control the expression of 'tagged' membrane proteins for detection and selections, yet can be turned off for expression of the protein in its native form. Utilizing an engineered Chinese hamster ovary cell line capable of efficient amber suppression, we evaluated the expression of a diverse panel of model membrane proteins and demonstrated the enrichment of cells with improved expression profiles, where similar to 200-800% improvement in total protein expression levels were observed over pre-sorted populations after a single round of fluorescence-activated cell sorting. Furthermore, results were most striking for the typically difficult-to-express G protein-coupled receptor, CXCR2, where similar to 2.5-fold improvement in surface expression was observed. We anticipate that the Tag-on-Demand approach will be suitable not only for membrane protein cell line development but also for the development of intracellular and secreted protein cell lines in expression systems for which amber suppression technology exists, including bacterial, yeast, insect and cell-free expression systems.
机译:膜蛋白在众多疾病的演变中发挥关键作用,结果已成为治疗干预的最多的目标目标。然而,他们的表达差和检测较差,禁止药物发现和筛选努力。在此,我们开发了一种方法,该方法名为“按需”,该方法利用琥珀色抑制来控制“标记”膜蛋白的表达式检测和选择,但可以关闭蛋白质以其本地形式的表达。利用能够有效琥珀抑制的工程化的中国仓鼠卵巢细胞系,我们评估了多样化的模型膜蛋白的表达,并展示了具有改进的表达谱的细胞的富集,其中总蛋白表达水平的提高了200-800%在一轮荧光激活的细胞分选后通过预先分选群体观察到。此外,结果对于通常难以表达的通常难以表达的G蛋白偶联受体,CXCR2的结果最引人注目,其中观察到类似于表面表达的2.5倍的改善。我们预期,按需方法的标签不仅适用于膜蛋白细胞系发育,而且还适用于在表达系统中发育细胞内和分泌的蛋白质细胞系,其中存在琥珀色抑制技术,包括细菌,酵母,昆虫和昆虫无细胞表达系统。

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