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Development of a Model Protein Interaction Pair as a Benchmarking Tool for the Quantitative Analysis of 2-Site Protein-Protein Interactions

机译:模型蛋白质相互作用对的开发作为定量分析2-位蛋白质-蛋白质相互作用的基准工具

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摘要

A significant challenge in the molecular interaction field is to accurately determine the stoichiometry and stepwise binding affinity constants for macromolecules having >1 binding site. The mission of the Molecular Interactions Research Group (MIRG) of the Association of Biomolecular Resource Facilities (ABRF) is to show how biophysical technologies are used to quantitatively characterize molecular interactions, and to educate the ABRF members and scientific community on the utility and limitations of core technologies [such as biosensor, microcalorimetry, or analytic ultracentrifugation (AUC)]. In the present work, the MIRG has developed a robust model protein interaction pair consisting of a bivalent variant of the Bacillus amyloliquefaciens extracellular RNase barnase and a variant of its natural monovalent intracellular inhibitor protein barstar. It is demonstrated that this system can serve as a benchmarking tool for the quantitative analysis of 2-site protein-protein interactions. The protein interaction pair enables determination of precise binding constants for the barstar protein binding to 2 distinct sites on the bivalent barnase binding partner (termed binase), where the 2 binding sites were engineered to possess affinities that differed by 2 orders of magnitude. Multiple MIRG laboratories characterized the interaction using isothermal titration calorimetry (ITC), AUC, and surface plasmon resonance (SPR) methods to evaluate the feasibility of the system as a benchmarking model. Although general agreement was seen for the binding constants measured using solution-based ITC and AUC approaches, weaker affinity was seen for surface-based method SPR, with protein immobilization likely affecting affinity. An analysis of the results from multiple MIRG laboratories suggests that the bivalent barnase-barstar system is a suitable model for benchmarking new approaches for the quantitative characterization of complex biomolecular interactions.
机译:分子相互作用领域的一个重大挑战是要准确地确定具有> 1个结合位点的大分子的化学计量和逐步结合亲和常数。生物分子资源设施协会(ABRF)的分子相互作用研究小组(MIRG)的任务是展示如何使用生物物理技术定量表征分子相互作用,并向ABRF成员和科学界教育其实用性和局限性。核心技术(例如生物传感器,微量量热法或分析超速离心(AUC))。在目前的工作中,MIRG已开发出一种健壮的模型蛋白质相互作用对,其中包括解淀粉芽孢杆菌细胞外RNase芽孢杆菌蛋白酶的二价变体和其天然单价细胞内抑制剂蛋白barstar的变体。结果表明,该系统可作为定量分析2位蛋白质-蛋白质相互作用的基准工具。蛋白质相互作用对能够确定与二价Barnase结合伴侣(称为Binase)上2个不同位点结合的barstar蛋白的精确结合常数,其中2个结合位点经改造后具有2个数量级的亲和力。多个MIRG实验室使用等温滴定量热法(ITC),AUC和表面等离子体共振(SPR)方法对相互作用进行了表征,以评估该系统作为基准模型的可行性。尽管对于使用基于溶液的ITC和AUC方法测得的结合常数已达成普遍共识,但对于基于表面的方法SPR却发现亲和力较弱,蛋白质固定化可能会影响亲和力。对来自多个MIRG实验室的结果进行的分析表明,二价barnase-barstar系统是用于对复杂生物分子相互作用的定量表征新方法进行基准测试的合适模型。

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