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The Stability and Formation of Native Proteins from Unfolded Monomers Is Increased through Interactions with Unrelated Proteins

机译:通过与无关蛋白的相互作用增加了未折叠单体的天然蛋白的稳定性和形成。

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摘要

The intracellular concentration of protein may be as high as 400 mg per ml; thus it seems inevitable that within the cell, numerous protein-protein contacts are constantly occurring. A basic biochemical principle states that the equilibrium of an association reaction can be shifted by ligand binding. This indicates that if within the cell many protein-protein interactions are indeed taking place, some fundamental characteristics of proteins would necessarily differ from those observed in traditional biochemical systems. Accordingly, we measured the effect of eight different proteins on the formation of homodimeric triosephosphate isomerase from Trypanosoma brucei (TbTIM) from guanidinium chloride unfolded monomers. The eight proteins at concentrations of micrograms per ml induced an important increase on active dimer formation. Studies on the mechanism of this phenomenon showed that the proteins stabilize the dimeric structure of TbTIM, and that this is the driving force that promotes the formation of active dimers. Similar data were obtained with TIM from three other species. The heat changes that occur when TbTIM is mixed with lysozyme were determined by isothermal titration calorimetry; the results provided direct evidence of the weak interaction between apparently unrelated proteins. The data, therefore, are strongly suggestive that the numerous protein-protein interactions that occur in the intracellular space are an additional control factor in the formation and stability of proteins.
机译:细胞内蛋白质浓度可能高达每毫升400毫克;因此,似乎不可避免的是,在细胞内,不断发生着许多蛋白质间的接触。一个基本的生化原理指出,缔合反应的平衡可以通过配体结合而改变。这表明,如果在细胞内确实发生了许多蛋白质-蛋白质相互作用,则蛋白质的某些基本特征将必然不同于传统生化系统中观察到的那些特征。因此,我们测量了八种不同蛋白质对来自氯化胍未折叠单体的布鲁氏锥虫(TbTIM)同二聚磷酸三糖异构酶形成的影响。浓度为每毫升微克的八种蛋白质诱导了活性二聚体形成的重要增加。对这种现象机理的研究表明,蛋白质稳定了TbTIM的二聚体结构,这是促进活性二聚体形成的驱动力。使用TIM从其他三个物种获得了相似的数据。 TbTIM与溶菌酶混合时发生的热变化是通过等温滴定热法测定的。结果提供了明显无关蛋白之间弱相互作用的直接证据。因此,该数据强烈暗示细胞内空间中发生的多种蛋白质-蛋白质相互作用是蛋白质形成和稳定性的另一个控制因素。

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