Analytical Chemistry Group and Biocatalysis Group, Van't Hoff Institute for Molecular Sciences (HIMS), University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands.
Centre for Analytical Sciences Amsterdam, Van't Hoff Institute for Molecular Sciences (HIMS), University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands.
Anal Chem. 2024 Jun 4;96(22):8880-8885. doi: 10.1021/acs.analchem.4c01760. Epub 2024 May 21.
The characterization of proteins and complexes in biological systems is essential to establish their critical properties and to understand their unique functions in a plethora of bioprocesses. However, it is highly difficult to analyze low levels of intact proteins in their native states (especially those exceeding 30 kDa) with liquid chromatography (LC)-mass spectrometry (MS). Herein, we describe for the first time the use of nanoflow ion-exchange chromatography directly coupled with native MS to resolve mixtures of intact proteins. Reference proteins and protein complexes with molecular weights between 10 and 150 kDa and a model cell lysate were separated using a salt-mediated pH gradient method with volatile additives. The method allowed for low detection limits (0.22 pmol of monoclonal antibodies), while proteins presented nondenatured MS (low number of charges and limited charge state distributions), and the oligomeric state of the complexes analyzed was mostly kept. Excellent chromatographic separations including the resolution of different proteoforms of large proteins (>140 kDa) and a peak capacity of 82 in a 30 min gradient were obtained. The proposed setup and workflows show great potential for analyzing diverse proteoforms in native top-down proteomics, opening unprecedented opportunities for clinical studies and other sample-limited applications.
在生物系统中对蛋白质和复合物进行特性分析对于确定其关键性质以及理解它们在众多生物过程中的独特功能至关重要。然而,用液相色谱(LC)-质谱(MS)分析其天然状态下(尤其是超过 30 kDa 的)低水平完整蛋白质极具难度。本文首次描述了使用纳流离子交换色谱直接与天然 MS 联用,以解析完整蛋白质混合物。使用挥发性添加剂的盐介导 pH 梯度方法分离了分子量在 10 至 150 kDa 之间的参考试验蛋白和蛋白复合物以及模型细胞裂解物。该方法实现了低检测限(0.22 pmol 单克隆抗体),同时保留了蛋白质的非变性 MS(电荷数量少,电荷状态分布有限),并且分析的复合物的寡聚状态基本保持不变。该方法获得了出色的色谱分离效果,包括对大蛋白质(>140 kDa)的不同蛋白质形式的解析以及在 30 分钟梯度洗脱中达到 82 的峰容量。所提出的设置和工作流程在分析天然从头蛋白质组学中的各种蛋白质形式方面具有很大的潜力,为临床研究和其他样本有限的应用开辟了前所未有的机会。