Martin Raoul, Liu Furong, Staskawicz Brian
Innovative Genomics Institute, University of California, Berkeley, California, USA.
Department of Plant and Microbial Biology, University of California, Berkeley, California, USA.
Curr Protoc. 2022 Oct;2(10):e572. doi: 10.1002/cpz1.572.
Protein purification is an essential method for understanding protein function, as many biochemical and structural techniques require a high concentration of isolated protein for analysis. Yet, many studies of protein complexes are hampered by our inability to express them recombinantly in model systems, generally due to poor expression or aggregation. When studying a protein complex that requires its host cellular environment for proper expression and folding, endogenous purification is typically required. Depending on the protein of interest, however, endogenous purification can be challenging because of low expression levels in the host and lack of knowledge working with a non-model expression system, resulting in yields that are too low for subsequent analysis. Here, we describe a protocol for the purification of protein complexes endogenous to Nicotiana benthamiana directly from leaf tissue, with yields that enable structural and biochemical characterization. The protein complex is overexpressed in Nicotiana benthamiana leaves via agroinfiltration, and the protein-packed leaves are then mechanically ground to release the complex from the cells. The protein complex is finally purified by a simple two-step tandem affinity purification using distinct affinity tags for each complex member, to ensure purification of the assembled complex. Our method yields enough protein for various biochemical or structural studies. We have previously used this protocol to purify the complex formed by an innate immune receptor native to tobacco, ROQ1, and the Xanthomonas effector XopQ, and to solve its structure by single-particle cryo-electron microscopy-we use this example to illustrate the approach. This protocol may serve as a template for the purification of proteins from N. benthamiana that require the plant's cellular environment and are expressed at low levels. © 2022 Wiley Periodicals LLC. Basic Protocol 1: Expression of the protein complex in leaf tissue Basic Protocol 2: Tandem affinity purification of the ROQ1-XopQ complex.
蛋白质纯化是理解蛋白质功能的一项重要方法,因为许多生化和结构技术都需要高浓度的分离蛋白进行分析。然而,许多蛋白质复合物的研究受到阻碍,因为我们无法在模型系统中重组表达它们,这通常是由于表达不佳或聚集所致。当研究需要宿主细胞环境进行正确表达和折叠的蛋白质复合物时,通常需要进行内源纯化。然而,根据所关注的蛋白质不同,内源纯化可能具有挑战性,因为宿主中的表达水平较低,且缺乏使用非模型表达系统的经验,导致产量过低,无法进行后续分析。在这里,我们描述了一种从烟草叶片组织中直接纯化本氏烟草内源蛋白质复合物的方案,其产量足以进行结构和生化表征。通过农杆菌浸润在本氏烟草叶片中过表达蛋白质复合物,然后将富含蛋白质的叶片进行机械研磨,以使复合物从细胞中释放出来。最后,使用针对每个复合物成员的不同亲和标签,通过简单的两步串联亲和纯化来纯化蛋白质复合物,以确保组装好的复合物得到纯化。我们的方法产生的蛋白质足以用于各种生化或结构研究。我们之前已经使用该方案纯化了烟草天然的先天免疫受体ROQ1和黄单胞菌效应蛋白XopQ形成的复合物,并通过单颗粒冷冻电子显微镜解析了其结构——我们用这个例子来说明该方法。该方案可作为从本氏烟草中纯化需要植物细胞环境且低水平表达的蛋白质的模板。© 2022威利期刊有限责任公司。基本方案1:蛋白质复合物在叶片组织中的表达 基本方案2:ROQ1 - XopQ复合物的串联亲和纯化。