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首页> 外文期刊>Journal of Theoretical Biology >Optimal cytoplasmatic density and flux balance model under macromolecular crowding effects.
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Optimal cytoplasmatic density and flux balance model under macromolecular crowding effects.

机译:大分子拥挤效应下的最佳细胞质密度和通量平衡模型。

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摘要

Macromolecules occupy between 34% and 44% of the cell cytoplasm, about half the maximum packing density of spheres in three dimension. Yet, there is no clear understanding of what is special about this value. To address this fundamental question we investigate the effect of macromolecular crowding on cell metabolism. We develop a cell scale flux balance model capturing the main features of cell metabolism at different nutrient uptakes and macromolecular densities. Using this model we show there are two metabolic regimes at low and high nutrient uptakes. The latter regime is characterized by an optimal cytoplasmatic density where the increase of reaction rates by confinement and the decrease by diffusion slow-down balance. More important, the predicted optimal density is in the range of the experimentally determined density of Escherichia coli.
机译:大分子占细胞质的34%至44%,大约是三维球体最大堆积密度的一半。但是,对于此值的特殊之处尚无明确的了解。为了解决这个基本问题,我们研究了大分子拥挤对细胞代谢的影响。我们开发了一种细胞规模通量平衡模型,该模型捕获了不同养分吸收和大分子密度下细胞代谢的主要特征。使用该模型,我们显示出在低和高养分吸收下有两种代谢方式。后一种方案的特征在于最佳的细胞质密度,其中通过限制提高反应速率,而通过扩散减速平衡降低速率。更重要的是,预测的最佳密度在实验确定的大肠杆菌密度范围内。

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