From the Department Willmitzer, Max Planck Institute for Molecular Plant Physiology, 14476 Potsdam and.
MetaSysX GmbH, 14476 Potsdam, Germany.
J Biol Chem. 2018 Aug 10;293(32):12440-12453. doi: 10.1074/jbc.RA118.003351. Epub 2018 May 31.
Small molecules not only represent cellular building blocks and metabolic intermediates, but also regulatory ligands and signaling molecules that interact with proteins. Although these interactions affect cellular metabolism, growth, and development, they have been largely understudied. Herein, we describe a method, which we named tein-etabolite nteractions using ize separation (PROMIS), that allows simultaneous, global analysis of endogenous protein-small molecule and of protein-protein complexes. To this end, a cell-free native lysate from cell cultures was fractionated by size-exclusion chromatography, followed by quantitative metabolomic and proteomic analyses. Proteins and small molecules showing similar elution behavior, across protein-containing fractions, constituted putative interactors. Applying PROMIS to an extract, we ascertained known protein-protein (PPIs) and protein-metabolite (PMIs) interactions and reproduced binding between small-molecule protease inhibitors and their respective proteases. More importantly, we present examples of two experimental strategies that exploit the PROMIS dataset to identify novel PMIs. By looking for similar elution behavior of metabolites and enzymes belonging to the same biochemical pathways, we identified putative feedback and feed-forward regulations in pantothenate biosynthesis and the methionine salvage cycle, respectively. By combining PROMIS with an orthogonal affinity purification approach, we identified an interaction between the dipeptide Tyr-Asp and the glycolytic enzyme glyceraldehyde-3-phosphate dehydrogenase. In summary, we present proof of concept for a powerful experimental tool that enables system-wide analysis of PMIs and PPIs across all biological systems. The dataset obtained here comprises nearly 140 metabolites and 5000 proteins, which can be mined for putative interactors.
小分子不仅代表细胞的构建块和代谢中间产物,还代表与蛋白质相互作用的调节配体和信号分子。尽管这些相互作用会影响细胞代谢、生长和发育,但它们在很大程度上仍未得到充分研究。在此,我们描述了一种方法,我们将其命名为使用尺寸分离进行的tein-代谢物相互作用分析(PROMIS),该方法允许同时对内源性蛋白质-小分子和蛋白质-蛋白质复合物进行全局分析。为此,从细胞培养物的无细胞天然裂解物中通过尺寸排阻色谱法进行分级,然后进行定量代谢组学和蛋白质组学分析。在含有蛋白质的级分中表现出相似洗脱行为的蛋白质和小分子构成了假定的相互作用物。将 PROMIS 应用于 提取物中,我们确定了已知的蛋白质-蛋白质(PPIs)和蛋白质-代谢物(PMIs)相互作用,并再现了小分子蛋白酶抑制剂与其各自蛋白酶之间的结合。更重要的是,我们提出了两种利用 PROMIS 数据集来鉴定新的 PMIs 的实验策略的示例。通过寻找属于同一生化途径的代谢物和酶具有相似的洗脱行为,我们分别鉴定了泛酸生物合成和蛋氨酸补救循环中的反馈和前馈调节。通过将 PROMIS 与正交亲和纯化方法结合使用,我们鉴定了二肽 Tyr-Asp 与糖酵解酶甘油醛-3-磷酸脱氢酶之间的相互作用。总之,我们提出了一个强大的实验工具的概念验证,该工具能够在所有生物系统中进行系统范围的 PMIs 和 PPIs 分析。这里获得的数据集包含近 140 种代谢物和 5000 种蛋白质,可以从中挖掘出假定的相互作用物。