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A power law distribution of metabolite abundance levels in mice regardless of the time and spatial scale of analysis

机译:小鼠代谢产物丰度水平的幂律分布与分析的时间和空间尺度无关

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摘要

Biomolecule abundance levels change with the environment and enable a living system to adapt to the new conditions. Although, the living system maintains at least some characteristics, e.g. homeostasis. One of the characteristics maintained by a living system is a power law distribution of biomolecule abundance levels. Previous studies have pointed to a universal characteristic of biochemical reaction networks, with data obtained from lysates of multiple cells. As a result, the spatial scale of the data related to the power law distribution of biomolecule abundance levels is not clear. In this study, we researched the scaling law of metabolites in mouse tissue with a spatial scale of quantification that was changed stepwise between a whole-tissue section and a single-point analysis (25 μm). As a result, metabolites in mouse tissues were found to follow the power law distribution independently of the spatial scale of analysis. Additionally, we tested the temporal changes by comparing data from younger and older mice. Both followed similar power law distributions, indicating that metabolite composition is not diversified by aging to disrupt the power law distribution. The power law distribution of metabolite abundance is thus a robust characteristic of a living system regardless of time and space.
机译:生物分子的丰度水平会随着环境的变化而变化,并使生命系统能够适应新的条件。虽然,生活系统保持至少一些特征,例如。稳态。生命系统维持的特征之一是生物分子丰度水平的幂律分布。先前的研究指出了生化反应网络的普遍特征,其数据来自多个细胞的裂解物。结果,与生物分子丰度水平的幂律分布有关的数据的空间尺度尚不清楚。在这项研究中,我们研究了小鼠组织中代谢物的缩放比例定律,其量化空间尺度在整个组织切片和单点分析(25μm)之间逐步改变。结果,发现小鼠组织中的代谢物遵循幂律分布,而与分析的空间尺度无关。此外,我们通过比较年轻和年长小鼠的数据测试了时间变化。两者都遵循相似的幂定律分布,这表明代谢物的组成并未因老化而多样化,从而破坏了幂定律分布。因此,无论时间和空间如何,代谢物丰度的幂律分布都是生命系统的强大特征。

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