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Placing Single-Molecule T4 Lysozyme Enzymes on a Bacterial Cell Surface: Toward Probing Single-Molecule Enzymatic Reaction in Living Cells

机译:将单分子T4溶菌酶置于细菌细胞表面:探寻活细胞中的单分子酶反应

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摘要

The T4 lysozyme enzymatic hydrolyzation reaction of bacterial cell walls is an important biological process, and single-molecule enzymatic reaction dynamics have been studied under physiological condition using purified Escherichia coli cell walls as substrates. Here, we report progress toward characterizing the T4 lysozyme enzymatic reaction on a living bacterial cell wall using a combined single-molecule placement and spectroscopy. Placing a dye-labeled single T4 lysozyme molecule on a targeted bacterial cell wall by using a hydrodynamic microinjection approach, we monitored single-molecule rotational motions during binding, attachment to, and dissociation from the cell wall by tracing single-molecule fluorescence intensity time trajectories and polarization. The single-molecule attachment duration of the T4 lysozyme to the cell wall during enzymatic reactions was typically shorter than the photobleaching time under physiological conditions. Applying single-molecule fluorescence polarization measurements to characterize the binding and motions of the T4 lysozyme molecules, we observed that the motions of wild-type and mutant T4 lysozyme proteins are essentially the same whether under an enzymatic reaction or not. The changing of the fluorescence polarization suggests that the motions of the T4 lysozyme are associated with orientational rotations. This observation also suggests that the T4 lysozyme binding-unbinding motions on cell walls involve a complex mechanism beyond a single-step first-order rate process.
机译:细菌细胞壁的T4溶菌酶水解反应是一个重要的生物学过程,已经在生理条件下以纯化的大肠杆菌细胞壁为底物研究了单分子酶反应动力学。在这里,我们报告了结合使用单分子放置和光谱法表征活细菌细胞壁上的T4溶菌酶反应的进展。通过使用流体力学微注射方法将染料标记的单个T4溶菌酶分子放置在目标细菌细胞壁上,我们通过跟踪单分子荧光强度时间轨迹来监测与细胞壁结合,附着和解离过程中的单分子旋转运动和极化。在酶促反应期间,T4溶菌酶与细胞壁的单分子附着持续时间通常比生理条件下的光漂白时间短。应用单分子荧光偏振测量来表征T4溶菌酶分子的结合和运动,我们观察到,无论是否在酶促反应下,野生型和突变T4溶菌酶蛋白的运动基本相同。荧光偏振的变化表明,T4溶菌酶的运动与定向旋转有关。该观察结果还表明,T4溶菌酶在细胞壁上的结合-解除结合运动涉及一个复杂的机制,其超出了一步法一级速率过程。

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  • 作者

    Hu, Dehong; Lu, H. Peter;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 en
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