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首页> 外文期刊>Journal of physical chemistry letters >In Vivo Protein Dynamics on the Nanometer Length Scale and Nanosecond Time Scale
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In Vivo Protein Dynamics on the Nanometer Length Scale and Nanosecond Time Scale

机译:在纳米长度尺度和纳秒尺度上的体内蛋白质动态

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Selectively labeled GroEL protein was produced in living deuterated bacterial cells to enhance its neutron scattering signal above that of the intracellular milieu. Quasi-elastic neutron scattering shows that the in-cell diffusion coefficient of GroEL was (4.7 +/- 0.3) x 10(-12) m(2)/s, a factor of 4 slower than its diffusion coefficient in buffer solution. Internal protein dynamics showed a relaxation time of (65 +/- 6) ps, a factor of 2 slower compared to the protein in solution. Comparison to the literature suggests that the effective diffusivity of proteins depends on the length and time scale being probed. Retardation of in-cell diffusion compared to the buffer becomes more significant with the increasing probe length scale, suggesting that intracellular diffusion of biomolecules is nonuniform over the cellular volume. The approach outlined here enables investigation of protein dynamics within living cells to open up new lines of research using "in-cell neutron scattering" to study the dynamics of complex biomolecular systems.
机译:在活性氘化细菌细胞中产生有选择性标记的腹股沟蛋白,以增强其中子散射信号以上细胞内Milieu的中子散射信号。准弹性中子散射表明,细胞内扩散系数的腹股沟(4.7 +/- 0.3)×10(-12)m(2)/ s,比缓冲溶液中的扩散系数慢4倍。内部蛋白质动力学显示出弛豫时间(65 +/- 6)ps,与溶液中的蛋白质相比,2倍。与文献的比较表明蛋白质的有效扩散性取决于探测的长度和时间尺度。与缓冲液相比的细胞内扩散的延迟随着探针长度的增加而变得更显着,表明生物分子的细胞内扩散在细胞体积上是不均匀的。这里概述的方法能够使用“细胞中子散射”来开辟生物细胞内的蛋白质动态,以研究复杂生物分子系统的动态。

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