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本文引用的文献

1
Diffusion, crowding & protein stability in a dynamic molecular model of the bacterial cytoplasm.细菌细胞质动态分子模型中的扩散、拥挤和蛋白质稳定性。
PLoS Comput Biol. 2010 Mar 5;6(3):e1000694. doi: 10.1371/journal.pcbi.1000694.
2
Protein abundance profiling of the Escherichia coli cytosol.大肠杆菌胞质溶胶的蛋白质丰度分析。
BMC Genomics. 2008 Feb 27;9:102. doi: 10.1186/1471-2164-9-102.
3
Coarse-grained molecular simulation of diffusion and reaction kinetics in a crowded virtual cytoplasm.拥挤虚拟细胞质中扩散与反应动力学的粗粒度分子模拟
Biophys J. 2008 May 15;94(10):3748-59. doi: 10.1529/biophysj.107.116053. Epub 2008 Jan 30.
4
Crowding and confinement effects on protein diffusion in vivo.体内拥挤和限制对蛋白质扩散的影响。
J Bacteriol. 2006 Sep;188(17):6115-23. doi: 10.1128/JB.01982-05.
5
The CyberCell Database (CCDB): a comprehensive, self-updating, relational database to coordinate and facilitate in silico modeling of Escherichia coli.网络细胞数据库(CCDB):一个全面、自我更新的关系型数据库,用于协调和促进大肠杆菌的计算机模拟建模。
Nucleic Acids Res. 2004 Jan 1;32(Database issue):D293-5. doi: 10.1093/nar/gkh108.
6
Development of unified statistical potentials describing protein-protein interactions.描述蛋白质-蛋白质相互作用的统一统计势的开发。
Biophys J. 2003 Mar;84(3):1895-901. doi: 10.1016/S0006-3495(03)74997-2.
7
Calculation of hydrodynamic properties of globular proteins from their atomic-level structure.从球状蛋白质的原子水平结构计算其流体动力学性质。
Biophys J. 2000 Feb;78(2):719-30. doi: 10.1016/S0006-3495(00)76630-6.
8
Cytoarchitecture and physical properties of cytoplasm: volume, viscosity, diffusion, intracellular surface area.细胞质的细胞结构和物理特性:体积、粘度、扩散、细胞内表面积。
Int Rev Cytol. 2000;192:189-221. doi: 10.1016/s0074-7696(08)60527-6.
9
Hydrodynamic properties of rigid particles: comparison of different modeling and computational procedures.刚性颗粒的流体动力学特性:不同建模与计算方法的比较
Biophys J. 1999 Jun;76(6):3044-57. doi: 10.1016/S0006-3495(99)77457-6.
10
Protein mobility in the cytoplasm of Escherichia coli.大肠杆菌细胞质中的蛋白质流动性。
J Bacteriol. 1999 Jan;181(1):197-203. doi: 10.1128/JB.181.1.197-203.1999.

原细胞中大分子扩散的布朗动力学模拟

BROWNIAN DYNAMICS SIMULATION OF MACROMOLECULE DIFFUSION IN A PROTOCELL.

作者信息

Ando Tadashi, Skolnick Jeffrey

机构信息

Center for the Study of Systems Biology, School of Biology, Georgia Institute of Technology250 14th Street NW, Atlanta, GA 30318-5304, USA.

出版信息

Quantum Bioinform IV (2010). 2011;28:413-426. doi: 10.1142/9789814343763_0032.

DOI:10.1142/9789814343763_0032
PMID:25599093
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4295211/
Abstract

The interiors of all living cells are highly crowded with macromolecules, which differs considerably the thermodynamics and kinetics of biological reactions between and . For example, the diffusion of green fluorescent protein (GFP) in is ~10-fold slower than in dilute conditions. In this study, we performed Brownian dynamics (BD) simulations of rigid macromolecules in a crowded environment mimicking the cytosol of to study the motions of macromolecules. The simulation systems contained 35 70S ribosomes, 750 glycolytic enzymes, 75 GFPs, and 392 tRNAs in a 100 nm × 100 nm × 100 nm simulation box, where the macromolecules were represented by rigid-objects of one bead per amino acid or four beads per nucleotide models. Diffusion tensors of these molecules in dilute solutions were estimated by using a hydrodynamic theory to take into account the diffusion anisotropy of arbitrary shaped objects in the BD simulations. BD simulations of the system where each macromolecule is represented by its Stokes radius were also performed for comparison. Excluded volume effects greatly reduce the mobility of molecules in crowded environments for both molecular-shaped and equivalent sphere systems. Additionally, there were no significant differences in the reduction of diffusivity over the entire range of molecular size between two systems. However, the reduction in diffusion of GFP in these systems was still 4-5 times larger than for the experiment. We will discuss other plausible factors that might cause the large reduction in diffusion .

摘要

所有活细胞的内部都高度拥挤着大分子,这使得细胞内和细胞外生物反应的热力学和动力学有很大差异。例如,绿色荧光蛋白(GFP)在细胞内的扩散速度比在稀释条件下慢约10倍。在本研究中,我们对模拟大肠杆菌细胞质的拥挤环境中的刚性大分子进行了布朗动力学(BD)模拟,以研究大分子的运动。模拟系统在一个100 nm×100 nm×100 nm的模拟盒中包含35个70S核糖体、750个糖酵解酶、75个GFP和392个tRNA,其中大分子由每个氨基酸一个珠子或每个核苷酸四个珠子的刚性物体表示。在BD模拟中,通过使用流体动力学理论来考虑任意形状物体的扩散各向异性,估计了这些分子在稀溶液中的扩散张量。还对每个大分子由其斯托克斯半径表示的系统进行了BD模拟以作比较。对于分子形状系统和等效球体系统,排除体积效应都大大降低了拥挤环境中分子的迁移率。此外,两个系统在整个分子大小范围内扩散率的降低没有显著差异。然而,这些系统中GFP扩散的降低仍比实验中的情况大4 - 5倍。我们将讨论可能导致扩散大幅降低的其他合理因素。