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Modeling the cost and benefit of proteome regulation in a growing bacterial cell

机译:培养蛋白质组调控在生长细菌细胞中的成本和益处

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Escherichia coli cells differentially regulate the production of metabolic and ribosomal proteins in order to stay close to an optimal growth rate in different environments, and exhibit the bacterial growth laws as a consequence. We present a simple mathematical model of a growing-dividing cell in which an internal dynamical mechanism regulates the allocation of proteomic resources between different protein sectors. The model allows an endogenous determination of the growth rate of the cell as a function of cellular and environmental parameters, and reproduces the bacterial growth laws. We use the model and its variants to study the balance between the cost and benefit of regulation. A cost is incurred because cellular resources are diverted to produce the regulatory apparatus. We show that there is a window of environments or a 'niche' in which the unregulated cell has a higher fitness than the regulated cell. Outside this niche there is a large space of constant and time varying environments in which regulation is an advantage. A knowledge of the 'niche boundaries' allows one to gain an intuitive understanding of the class of environments in which regulation is an advantage for the organism and which would therefore favour the evolution of regulation. The model allows us to determine the 'niche boundaries' as a function of cellular parameters such as the size of the burden of the regulatory apparatus. This class of models may be useful in elucidating
机译:大肠杆菌细胞差异调节代谢和核糖体蛋白的产生,以保持接近不同环境中的最佳生长速率,并因此表现出细菌生长规律。我们介绍了一种生长分裂细胞的简单数学模型,其中内部动态机制调节不同蛋白质部门之间的蛋白质组学资源的分配。该模型允许内源性测定细胞的生长速率作为细胞和环境参数的函数,再现细菌生长规律。我们使用该模型及其变体来研究规范的成本和益处之间的平衡。产生成本,因为蜂窝资源被转移以产生监管设备。我们表明,有一个环境窗口或“利基”,其中未调节的电池具有比调节的细胞更高的适合度。在这个利基之外,有一个很大的空间的恒定和时间变化的环境,其中规则是一个优势。对“利基边界”的知识使人们能够直观地理解该规则对于生物体是一个优势的环境,因此有利于调节的演变。该模型允许我们确定作为蜂窝参数的函数的“利基边界”,例如监管装置的负担的尺寸。这类模型可能很有用阐明

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