School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin 150001, China.
Department of Chemistry, College of Science, Southern University of Science and Technology, Shenzhen 518055, China.
Anal Chem. 2021 Feb 9;93(5):3026-3034. doi: 10.1021/acs.analchem.0c05076. Epub 2021 Jan 31.
Affinity purification coupled to mass spectrometry (AP-MS) is a popular approach for deciphering the architecture of protein interaction networks. Protein lysates (100 μg) are typically required for multistep sample processing in large volumes, which often causes sample loss and reduces the MS analysis sensitivity. Herein, we reported a fully integrated spintip-based AP-MS technology, termed FISAP, for multiplexed and sensitive interactome profiling. The FISAP device can be easily employed for routine use by introducing AP beads into a C18 StageTip. Taking advantage of the switchable functionalization of the C18 matrix by sodium dodecyl sulfate, all the sample preparation steps encompassing peptide or antibody-based AP, reduction, alkylation, tryptic digestion, tandem mass tag (TMT) labeling, and desalting can be performed in a single tip with a benchtop centrifuge in 4 h. Using a biotinylated tyrosine phosphorylated (pTyr) peptide as an affinity ligand, we mapped the pTyr-dependent interactome of the pY191 motif on the immune receptor CD28 cytoplasmic domain. When processing 50 μg of protein lysates, FISAP showed a comparable interactome identification performance but better quantification performance and lower background interference compared to the traditional tube-based method. Furthermore, a cost-effective on-column TMT labeling protocol was established and integrated into the FISAP pipeline with increased sensitivity. Compared to the tube-based method, the usage of a synthetic peptide probe and a TMT reagent was both reduced by 20 times. As low as 1 μg of protein lysates could be applied for interactome profiling. Finally, we expanded the applicability of the FISAP technology to epitope tag-based AP-MS for profiling the ILK/PINCH/Parvin complex using 100 times less protein lysate than a previous report. Collectively, FISAP is an easy-to-use and sensitive technology for quantitatively profiling protein complexes when the starting material and affinity reagent are the limitation, especially for applications in biomedical research and chemical biology.
亲和纯化结合质谱(AP-MS)是解析蛋白质相互作用网络结构的一种常用方法。在大容量多步样品处理中,通常需要 100μg 的蛋白裂解物,但这会导致样品损失并降低 MS 分析的灵敏度。本文报道了一种基于自旋针尖的完全集成的 AP-MS 技术,称为 FISAP,用于多重和敏感的互作组谱分析。FISAP 设备可通过将 AP 珠粒引入 C18 固相萃取针尖(StageTip)中,轻松地用于常规应用。利用十二烷基硫酸钠对 C18 基质的可切换功能化,所有的样品制备步骤,包括基于肽或抗体的 AP、还原、烷基化、胰酶消化、串联质量标签(TMT)标记和脱盐,都可以在 4 小时内使用台式离心机在单个针尖中完成。我们使用生物素化酪氨酸磷酸化(pTyr)肽作为亲和配体,绘制了免疫受体 CD28 胞质结构域上 pY191 基序依赖的 pTyr 互作组。当处理 50μg 蛋白裂解物时,与传统的管内方法相比,FISAP 显示出相当的互作组鉴定性能,但具有更好的定量性能和更低的背景干扰。此外,还建立了一种经济有效的柱上 TMT 标记方案,并将其整合到 FISAP 工作流程中,以提高灵敏度。与管内方法相比,合成肽探针和 TMT 试剂的使用量均减少了 20 倍。低至 1μg 的蛋白裂解物即可用于互作组谱分析。最后,我们将 FISAP 技术的适用性扩展到基于表位标签的 AP-MS,用于使用比以前的报道少 100 倍的蛋白裂解物来分析 ILK/PINCH/Parvin 复合物。总的来说,当起始材料和亲和试剂是限制因素时,FISAP 是一种易于使用且灵敏的技术,可用于定量分析蛋白质复合物,特别是在生物医学研究和化学生物学应用中。