Department of Chemical and Biological Engineering, Northwestern University, 2145 Sheridan Road, Evanston, IL 60208, USA.
Biotechnol Bioeng. 2013 Oct;110(10):2643-54. doi: 10.1002/bit.24942. Epub 2013 Jul 7.
Cell-free protein synthesis (CFPS) has emerged as a powerful platform technology to help satisfy the growing demand for simple, affordable, and efficient protein production. In this article, we describe a novel CFPS platform derived from the popular bio-manufacturing organism Saccharomyces cerevisiae. By developing a streamlined crude extract preparation protocol and optimizing the CFPS reaction conditions we were able to achieve active firefly luciferase synthesis yields of 7.7 ± 0.5 µg mL(-1) with batch reactions lasting up to 2 h. This duration of synthesis is the longest ever reported for a yeast CFPS batch reaction. Furthermore, by removing extraneous processing steps and eliminating expensive reagents from the cell-free reaction, we have increased relative product yield (µg protein synthesized per $ reagent cost) over an alternative commonly used method up to 2000-fold from ∼2 × 10(-4) to ∼4 × 10(-1) µg $(-1) , which now puts the yeast CPFS platform on par with other eukaryotic CFPS platforms commercially available. Our results set the stage for developing a yeast CFPS platform that provides for high-yielding and cost-effective expression of a variety of protein therapeutics and protein libraries.
无细胞蛋白质合成(CFPS)已成为一种强大的平台技术,可帮助满足对简单、经济高效的蛋白质生产的日益增长的需求。在本文中,我们描述了一种源自流行的生物制造生物酵母的新型 CFPS 平台。通过开发简化的粗提物制备方案并优化 CFPS 反应条件,我们能够实现批处理反应中活性萤火虫荧光素酶的合成产率为 7.7 ± 0.5 µg mL(-1),持续时间长达 2 小时。这是迄今为止报道的酵母 CFPS 批处理反应中最长的合成时间。此外,通过从无细胞反应中去除多余的处理步骤和昂贵的试剂,我们已经将相对产物产量(每单位试剂成本合成的蛋白质微克数)相对于另一种常用方法提高了 2000 倍,从约 2×10(-4)提高到约 4×10(-1)µg$(-1),现在使酵母 CFPS 平台与其他市售的真核 CFPS 平台相媲美。我们的结果为开发一种酵母 CFPS 平台奠定了基础,该平台可为各种蛋白质治疗剂和蛋白质文库提供高产和经济高效的表达。