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Protein Cross-linking Capillary Electrophoresis at Increased Throughput for a Range of Protein-Protein Interactions

机译:蛋白质交联的毛细管电泳以增加的通量进行一系列蛋白质-蛋白质相互作用

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摘要

Tools for measuring affinities and stoichiometries of protein-protein complexes are valuable for elucidating the role of protein-protein interactions (PPIs) in governing cell functions and screening for PPI modulators. Such measurements can be challenging because PPIs can span a wide range of affinities and include stoichiometries from dimers to high order oligomers. Also, most techniques require large amounts of protein which can hamper research for difficult to obtain proteins. Protein cross-linking capillary electrophoresis (PXCE) has the potential to directly measure PPIs and even resolve multiple PPIs while consuming attomole quantities. Previously PXCE has only been used for high affinity, 1:1 complexes; here we expand the utility of PXCE to access a wide range of PPIs including weak and multimeric oligomers. Use of glutaraldehyde as the cross-linking agent was key to advancing the method because of its rapid reaction kinetics. A 10 s reaction time was found to be sufficient for cross-linking and quantification of seven different PPIs with Kd values ranging from low μM to low nM including heat shock protein 70 (Hsp70) interacting with heat shock organizing protein (3.8 ± 0.7 μM) and bcl2 associated anthanogene (26 ± 6 nM). Non-specific cross-linking of protein aggregates was found to be minimal at protein concentrations < 20 μM as assessed by size exclusion chromatography. PXCE was sensitive enough to measure changes in PPI affinity induced by the protein nucleotide state or point mutations in the protein-binding site. Further, several interactions could be resolved in a single run, including Hsp70 monomer, homodimer and Hsp70 complexed the with c-terminus of Hsp70 interacting protein (CHIP). Finally, the throughput of PXCE was increased to 1 min per sample suggesting potential for utility in screening.
机译:测量蛋白质-蛋白质复合物亲和力和化学计量的工具对于阐明蛋白质-蛋白质相互作用(PPI)在调控细胞功能和筛选PPI调节剂中的作用非常有价值。这种测量可能具有挑战性,因为PPI可以涵盖广泛的亲和力,并且包括从二聚体到高阶低聚物的化学计量。而且,大多数技术需要大量的蛋白质,这可能会阻碍难以获得蛋白质的研究。蛋白质交联毛细管电泳(PXCE)具有直接测量PPI甚至分解多个PPI的潜力,同时消耗了原子量。以前,PXCE仅用于高亲和力的1:1配合物。在这里,我们扩展了PXCE的实用程序,以访问各种PPI,包括弱和多聚体低聚物。由于戊二醛的快速反应动力学,因此使用戊二醛作为交联剂是推进该方法的关键。发现10 s反应时间足以交联和定量7种不同的PPI,其Kd值范围从低μM到低nM,包括热休克蛋白70(Hsp70)与热休克组织蛋白(3.8±0.7μM)相互作用和bcl2相关的蒽基因(26±6 nM)。如通过尺寸排阻色谱法评估,发现蛋白质聚集体的非特异性交联在蛋白质浓度<20μM时极少。 PXCE足够灵敏,可以测量由蛋白质核苷酸状态或蛋白质结合位点中的点突变引起的PPI亲和力的变化。此外,几个相互作用可以在一次运行中解决,包括Hsp70单体,同型二聚体和与Hsp70相互作用蛋白(CHIP)c端复合的Hsp70。最后,PXCE的通量增加到每个样品1分钟,这表明有潜力用于筛选。

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