Institute of Molecular Biosciences (IMB), University of Graz, Humboldtstraße 50, 8010, Graz, Austria.
Centre for Misfolding Diseases, Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, UK.
Nat Commun. 2024 Sep 4;15(1):7740. doi: 10.1038/s41467-024-50825-9.
The physical characterization of proteins in terms of their sizes, interactions, and assembly states is key to understanding their biological function and dysfunction. However, this has remained a difficult task because proteins are often highly polydisperse and present as multicomponent mixtures. Here, we address this challenge by introducing single-molecule microfluidic diffusional sizing (smMDS). This approach measures the hydrodynamic radius of single proteins and protein assemblies in microchannels using single-molecule fluorescence detection. smMDS allows for ultrasensitive sizing of proteins down to femtomolar concentrations and enables affinity profiling of protein interactions at the single-molecule level. We show that smMDS is effective in resolving the assembly states of protein oligomers and in characterizing the size of protein species within complex mixtures, including fibrillar protein aggregates and nanoscale condensate clusters. Overall, smMDS is a highly sensitive method for the analysis of proteins in solution, with wide-ranging applications in drug discovery, diagnostics, and nanobiotechnology.
蛋白质的物理特性,包括其大小、相互作用和组装状态,是理解其生物学功能和功能障碍的关键。然而,由于蛋白质通常高度多分散且呈多组分混合物存在,这一任务一直具有挑战性。在这里,我们通过引入单分子微流控扩散尺寸分析(smMDS)来解决这一挑战。该方法使用单分子荧光检测在微通道中测量单个蛋白质和蛋白质组装体的流体力学半径。smMDS 允许对低至皮摩尔浓度的蛋白质进行超灵敏尺寸分析,并能够在单分子水平上进行蛋白质相互作用的亲和分析。我们表明,smMDS 有效地解析了蛋白质低聚物的组装状态,并能够对复杂混合物中的蛋白质种类的大小进行特征描述,包括纤维状蛋白质聚集体和纳米级凝聚物簇。总体而言,smMDS 是一种用于分析溶液中蛋白质的高灵敏度方法,在药物发现、诊断和纳米生物技术等领域有广泛的应用。