VIB-UGent Center for Medical Biotechnology, Ghent, Belgium.
Department of Biochemistry, Ghent University, Ghent, Belgium.
Nat Protoc. 2017 May;12(5):881-898. doi: 10.1038/nprot.2017.014. Epub 2017 Mar 30.
The analysis of protein interaction networks is one of the key challenges in the study of biology. It connects genotypes to phenotypes, and disruption of such networks is associated with many pathologies. Virtually all the approaches to the study of protein complexes require cell lysis, a dramatic step that obliterates cellular integrity and profoundly affects protein interactions. This protocol starts with Virotrap, a novel approach that avoids the need for cell homogenization by fusing the protein of interest to the HIV-1 Gag protein, trapping protein complexes in virus-like particles. By using the straightforward filtering index (SFINX), which is a powerful and intuitive online tool (http://sfinx.ugent.be) that enables contaminant removal from candidate lists resulting from mass-spectrometry-based analysis, we provide a complete workflow for researchers interested in mammalian protein complexes. Given direct access to mass spectrometers, researchers can process up to 24 samples in 7 d.
蛋白质相互作用网络的分析是生物学研究中的关键挑战之一。它将基因型与表型联系起来,而这种网络的破坏与许多病理学有关。实际上,所有研究蛋白质复合物的方法都需要细胞裂解,这是一个剧烈的步骤,会破坏细胞的完整性,并深刻影响蛋白质的相互作用。本方案从 Virotrap 开始,这是一种新方法,通过将感兴趣的蛋白质与 HIV-1 Gag 蛋白融合,将蛋白质复合物捕获在类病毒颗粒中,从而避免了细胞匀浆的需要。通过使用简单的过滤指数 (SFINX),这是一个强大而直观的在线工具 (http://sfinx.ugent.be),可以从基于质谱分析的候选列表中去除污染物,我们为有兴趣研究哺乳动物蛋白质复合物的研究人员提供了一个完整的工作流程。如果直接使用质谱仪,研究人员可以在 7 天内处理多达 24 个样本。