Prielhofer Roland, Barrero Juan J, Steuer Stefanie, Gassler Thomas, Zahrl Richard, Baumann Kristin, Sauer Michael, Mattanovich Diethard, Gasser Brigitte, Marx Hans
Department of Biotechnology, BOKU University of Natural Resources and Life Sciences, Muthgasse 18, 1190, Vienna, Austria.
Austrian Centre of Industrial Biotechnology (acib), Vienna, Austria.
BMC Syst Biol. 2017 Dec 8;11(1):123. doi: 10.1186/s12918-017-0492-3.
State-of-the-art strain engineering techniques for the host Pichia pastoris (syn. Komagataella spp.) include overexpression of homologous and heterologous genes, and deletion of host genes. For metabolic and cell engineering purposes the simultaneous overexpression of more than one gene would often be required. Very recently, Golden Gate based libraries were adapted to optimize single expression cassettes for recombinant proteins in P. pastoris. However, an efficient toolbox allowing the overexpression of multiple genes at once was not available for P. pastoris.
With the GoldenPiCS system, we provide a flexible modular system for advanced strain engineering in P. pastoris based on Golden Gate cloning. For this purpose, we established a wide variety of standardized genetic parts (20 promoters of different strength, 10 transcription terminators, 4 genome integration loci, 4 resistance marker cassettes).
All genetic parts were characterized based on their expression strength measured by eGFP as reporter in up to four production-relevant conditions. The promoters, which are either constitutive or regulatable, cover a broad range of expression strengths in their active conditions (2-192% of the glyceraldehyde-3-phosphate dehydrogenase promoter P ), while all transcription terminators and genome integration loci led to equally high expression strength. These modular genetic parts can be readily combined in versatile order, as exemplified for the simultaneous expression of Cas9 and one or more guide-RNA expression units. Importantly, for constructing multigene constructs (vectors with more than two expression units) it is not only essential to balance the expression of the individual genes, but also to avoid repetitive homologous sequences which were otherwise shown to trigger "loop-out" of vector DNA from the P. pastoris genome.
GoldenPiCS, a modular Golden Gate-derived P. pastoris cloning system, is very flexible and efficient and can be used for strain engineering of P. pastoris to accomplish pathway expression, protein production or other applications where the integration of various DNA products is required. It allows for the assembly of up to eight expression units on one plasmid with the ability to use different characterized promoters and terminators for each expression unit. GoldenPiCS vectors are available at Addgene.
用于宿主巴斯德毕赤酵母(同义词:Komagataella属)的先进菌株工程技术包括同源和异源基因的过表达以及宿主基因的缺失。出于代谢和细胞工程的目的,通常需要同时过表达多个基因。最近,基于金门克隆的文库被用于优化毕赤酵母中重组蛋白的单个表达盒。然而,毕赤酵母没有一个能同时过表达多个基因的高效工具箱。
利用GoldenPiCS系统,我们基于金门克隆为毕赤酵母的高级菌株工程提供了一个灵活的模块化系统。为此,我们建立了多种标准化的遗传元件(20个不同强度的启动子、10个转录终止子、4个基因组整合位点、4个抗性标记盒)。
所有遗传元件均根据其在多达四种与生产相关条件下以eGFP作为报告基因测量的表达强度进行了表征。组成型或可调控的启动子在其活性条件下覆盖了广泛的表达强度范围(甘油醛-3-磷酸脱氢酶启动子P的2%-192%),而所有转录终止子和基因组整合位点导致同样高的表达强度。这些模块化遗传元件可以很容易地以多种顺序组合,如同时表达Cas9和一个或多个引导RNA表达单元所示。重要的是,对于构建多基因构建体(具有两个以上表达单元的载体),不仅要平衡各个基因的表达,还要避免重复的同源序列,否则这些序列会导致载体DNA从毕赤酵母基因组中“环出”。
GoldenPiCS是一种基于金门克隆的模块化毕赤酵母克隆系统,非常灵活高效,可用于毕赤酵母的菌株工程,以实现途径表达、蛋白质生产或其他需要整合各种DNA产物的应用。它允许在一个质粒上组装多达八个表达单元,每个表达单元能够使用不同特征的启动子和终止子。GoldenPiCS载体可在Addgene获得。