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实验室间无细胞蛋白质合成变异性的量化

Quantification of Interlaboratory Cell-Free Protein Synthesis Variability.

作者信息

Cole Stephanie D, Beabout Kathryn, Turner Kendrick B, Smith Zachary K, Funk Vanessa L, Harbaugh Svetlana V, Liem Alvin T, Roth Pierce A, Geier Brian A, Emanuel Peter A, Walper Scott A, Chávez Jorge L, Lux Matthew W

机构信息

US Army Combat Capabilities Development Command Chemical Biological Center . 8198 Blackhawk Road , APG , Maryland 21010 , United States.

Excet, Inc. , 6225 Brandon Avenue #360 , Springfield , Virginia 22150 , United States.

出版信息

ACS Synth Biol. 2019 Sep 20;8(9):2080-2091. doi: 10.1021/acssynbio.9b00178. Epub 2019 Sep 10.

Abstract

Cell-free protein synthesis (CFPS) platforms, once primarily a research tool to produce difficult to express proteins, are increasingly being pursued by the synthetic biology community for applications including biomanufacturing, rapid screening systems, and field-ready sensors. While consistency within individual studies is apparent in the literature, challenges with reproducing results between laboratories, or even between individuals within a laboratory, are discussed openly by practitioners. As the field continues to grow and move toward applications, a quantitative understanding of expected variability for CFPS and the relative contribution of underlying sources will become increasingly important. Here we offer the first quantitative assessment of interlaboratory variability in CFPS. Three laboratories implemented a single CFPS protocol and performed a series of exchanges, both of material and personnel, designed to quantify relative contributions to variability associated with the site, operator, cell extract preparation, and supplemental reagent preparation. We found that materials prepared at each laboratory, exchanged pairwise, and tested at each site resulted in 40.3% coefficient of variation compared to 7.64% for a single operator across days using a single set of materials. Reagent preparations contributed significantly to observed variability; extract preparations, however, surprisingly did not explain any of the observed variability, even when prepared in different laboratories by different operators. Subsequent exchanges showed that both the site and the operator each contributed to observed interlaboratory variability. In addition to providing the first quantitative assessment of interlaboratory variability in CFPS, these results establish a baseline for individual operator variability across days that can be used as an initial benchmark for community-driven standardization efforts. We anticipate that our results will narrow future avenues of investigation to develop best practices that will ultimately drive down interlaboratory variability, accelerating research progress and informing the suitability of CFPS for real-world applications.

摘要

无细胞蛋白质合成(CFPS)平台曾经主要是一种用于生产难以表达的蛋白质的研究工具,如今越来越受到合成生物学界的关注,其应用包括生物制造、快速筛选系统和现场可用传感器。虽然文献中单个研究的一致性很明显,但从业者公开讨论了在不同实验室之间甚至同一实验室的不同个体之间重现结果时所面临的挑战。随着该领域不断发展并走向实际应用,对CFPS预期变异性及其潜在来源的相对贡献进行定量理解将变得越来越重要。在此,我们首次对CFPS的实验室间变异性进行了定量评估。三个实验室实施了单一的CFPS方案,并进行了一系列材料和人员的交换,旨在量化与实验地点、操作人员、细胞提取物制备和补充试剂制备相关的变异性的相对贡献。我们发现,在每个实验室制备、两两交换并在每个地点进行测试的材料,其变异系数为40.3%,而同一操作人员使用同一套材料在不同日期进行测试时的变异系数为7.64%。试剂制备对观察到的变异性有显著贡献;然而,令人惊讶的是,提取物制备并未解释任何观察到的变异性,即使是由不同操作人员在不同实验室制备的。后续的交换表明,实验地点和操作人员都对观察到的实验室间变异性有贡献。除了首次对CFPS的实验室间变异性进行定量评估外,这些结果还为单个操作人员不同日期的变异性建立了基线,可作为社区驱动的标准化努力的初始基准。我们预计,我们的结果将缩小未来的研究途径,以制定最佳实践,最终降低实验室间变异性,加速研究进展,并为CFPS在实际应用中的适用性提供参考。

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