Reddy Chichili Vishnu Priyanka, Kumar Veerendra, Sivaraman J
Department of Biological Sciences, National University of Singapore, Singapore, 117543.
J Biol Methods. 2016;3(1):e34. doi: 10.14440/jbm.2016.81.
Protein-protein interactions are key events controlling several biological processes. We have developed and employed a method to trap transiently interacting protein complexes for structural studies using glycine-rich linkers to fuse interacting partners, one of which is unstructured. Initial steps involve isothermal titration calorimetry to identify the minimum binding region of the unstructured protein in its interaction with its stable binding partner. This is followed by computational analysis to identify the approximate site of the interaction and to design an appropriate linker length. Subsequently, fused constructs are generated and characterized using size exclusion chromatography and dynamic light scattering experiments. The structure of the chimeric protein is then solved by crystallization, and validated both and by substituting key interacting residues of the full length, unlinked proteins with alanine. This protocol offers the opportunity to study crucial and currently unattainable transient protein interactions involved in various biological processes.
蛋白质-蛋白质相互作用是控制多种生物学过程的关键事件。我们开发并采用了一种方法,利用富含甘氨酸的接头融合相互作用的伙伴来捕获瞬时相互作用的蛋白质复合物用于结构研究,其中一个伙伴是无结构的。初始步骤包括等温滴定量热法,以确定无结构蛋白质与其稳定结合伙伴相互作用时的最小结合区域。接下来进行计算分析,以确定相互作用的大致位点并设计合适的接头长度。随后,生成融合构建体并使用尺寸排阻色谱法和动态光散射实验进行表征。然后通过结晶解析嵌合蛋白的结构,并通过将全长未连接蛋白的关键相互作用残基替换为丙氨酸来进行体内和体外验证。该方案为研究各种生物学过程中涉及的关键且目前无法实现的瞬时蛋白质相互作用提供了机会。