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通过共表达质子通道调节分泌途径的pH值可以提高植物中重组蛋白的稳定性。

Modulating secretory pathway pH by proton channel co-expression can increase recombinant protein stability in plants.

作者信息

Jutras Philippe V, D'Aoust Marc-André, Couture Manon M-J, Vézina Louis-Philippe, Goulet Marie-Claire, Michaud Dominique, Sainsbury Frank

机构信息

Département de phytologie, Université Laval, Québec, Canada.

Medicago, Inc., Québec, Canada.

出版信息

Biotechnol J. 2015 Sep;10(9):1478-86. doi: 10.1002/biot.201500056. Epub 2015 May 26.

Abstract

Eukaryotic expression systems are used for the production of complex secreted proteins. However, recombinant proteins face considerable biochemical challenges along the secretory pathway, including proteolysis and pH variation between organelles. As the use of synthetic biology matures into solutions for protein production, various host-cell engineering approaches are being developed to ameliorate host-cell factors that can limit recombinant protein quality and yield. We report the potential of the influenza M2 ion channel as a novel tool to neutralize the pH in acidic subcellular compartments. Using transient expression in the plant host, Nicotiana benthamiana, we show that ion channel expression can significantly raise pH in the Golgi apparatus and that this can have a strong stabilizing effect on a fusion protein separated by an acid-susceptible linker peptide. We exemplify the utility of this effect in recombinant protein production using influenza hemagglutinin subtypes differentially stable at low pH; the expression of hemagglutinins prone to conformational change in mildly acidic conditions is considerably enhanced by M2 co-expression. The co-expression of a heterologous ion channel to stabilize acid-labile proteins and peptides represents a novel approach to increasing the yield and quality of secreted recombinant proteins in plants and, possibly, in other eukaryotic expression hosts.

摘要

真核表达系统用于生产复杂的分泌蛋白。然而,重组蛋白在分泌途径中面临着相当大的生化挑战,包括蛋白水解以及细胞器之间的pH变化。随着合成生物学的应用逐渐成熟并成为蛋白质生产的解决方案,人们正在开发各种宿主细胞工程方法来改善可能限制重组蛋白质量和产量的宿主细胞因素。我们报告了流感M2离子通道作为一种在酸性亚细胞区室中中和pH的新型工具的潜力。通过在植物宿主本氏烟草中进行瞬时表达,我们表明离子通道的表达可以显著提高高尔基体中的pH,并且这对由酸敏感连接肽分隔的融合蛋白具有很强的稳定作用。我们以在低pH下稳定性不同的流感血凝素亚型为例,说明了这种效应在重组蛋白生产中的实用性;M2共表达可显著增强在轻度酸性条件下易于发生构象变化的血凝素的表达。共表达异源离子通道以稳定酸不稳定的蛋白质和肽,代表了一种提高植物以及可能在其他真核表达宿主中分泌的重组蛋白产量和质量的新方法。

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