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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Intracellular pH modulates quinary structure
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Intracellular pH modulates quinary structure

机译:细胞内pH调节五元结构

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NMR spectroscopy can provide information about proteins in living cells. pH is an important characteristic of the intracellular environment because it modulates key protein properties such as net charge and stability. Here, we show that pH modulates quinary interactions, the weak, ubiquitous interactions between proteins and other cellular macromolecules. We use the K10H variant of the B domain of protein G (GB1, 6.2 kDa) as a pH reporter in Escherichia coli cells. By controlling the intracellular pH, we show that quinary interactions influence the quality of in-cell N-15-H-1 HSQC NMR spectra. At low pH, the quality is degraded because the increase in attractive interactions between E. coli proteins and GB1 slows GB1 tumbling and broadens its crosspeaks. The results demonstrate the importance of quinary interactions for furthering our understanding of protein chemistry in living cells.
机译:NMR光谱可以提供有关活细胞中蛋白质的信息。 pH是细胞内环境的重要特征,因为它调节关键的蛋白质特性,例如净电荷和稳定性。在这里,我们表明pH值调节蛋白质和其他细胞大分子之间的弱相互作用的五元相互作用。我们使用蛋白质G(GB1,6.2 kDa)B结构域的K10H变体作为大肠杆菌细胞中的pH报道分子。通过控制细胞内的pH值,我们表明五元相互作用影响细胞内N-15-H-1 HSQC NMR光谱的质量。在低pH值下,由于大肠杆菌蛋白质和GB1之间有吸引力的相互作用增加,GB1的滚动速度变慢,并且交叉峰变宽,因此质量下降。结果证明了五元相互作用对于增进我们对活细胞中蛋白质化学的理解的重要性。

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