Shifts in growth strategies reflect tradeoffs in cellular economics

Сдвиги в стратегиях роста отражают компромиссы в клеточной экономике
Douwe Molenaar, Rogier van Berlo, Dick de Ridder, Bas Teusink
2009-11-03

cellular economicsgrowth rate optimizationmetabolic efficiency tradeoffribosomal contentself-replicating systems
The growth rate-dependent regulation of cell size, ribosomal content, and metabolic efficiency follows a common pattern in unicellular organisms: with increasing growth rates, cell size and ribosomal content increase and a shift to energetically inefficient metabolism takes place. The latter two phenomena are also observed in fast growing tumour cells and cell lines. These patterns suggest a fundamental principle of design. In biology such designs can often be understood as the result of the optimization of fitness. Here we show that in basic models of self-replicating systems these patterns are the consequence of maximizing the growth rate. Whereas most models of cellular growth consider a part of physiology, for instance only metabolism, the approach presented here integrates several subsystems to a complete self-replicating system. Such models can yield fundamentally different optimal strategies. In particular, it is shown how the shift in metabolic efficiency originates from a tradeoff between investments in enzyme synthesis and metabolic yields for alternative catabolic pathways. The models elucidate how the optimization of growth by natural selection shapes growth strategies.
1
An integrated model combining multiple cellular subsystems can predict fundamentally different optimal strategies than models focused on isolated physiological processes.
2
Growth-rate-dependent increases in cell size and ribosomal content, alongside shifts toward energetically inefficient metabolism, emerge from maximizing growth rate in self-replicating system models.
3
Optimization of growth by natural selection provides a unifying explanation for observed growth strategies in unicellular organisms and rapidly proliferating tumor cells and cell lines.
4
The shift toward less efficient metabolism results from a tradeoff between investment in enzyme synthesis and metabolic yield across alternative catabolic pathways.

self-replicating cellular systems, including unicellular organisms and fast-growing tumour cells

growth-rate optimization and the resulting tradeoffs among cell size, ribosomal content, metabolic efficiency, and enzyme investment in alternative catabolic pathways

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2009-11-03
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Authors
Douwe Molenaar
Rogier van Berlo
Dick de Ridder
Bas Teusink
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