How to optimize the allocation of enzymes in metabolic pathways has been a topic of study for many decades. Although the general problem is complex and nonlinear, we have previously shown that it can be solved by convex optimization. In this paper, we focus on unbranched metabolic pathways with simplified enzymatic rate laws and derive analytic solutions to the optimization problem. We revisit existing solutions based on the limit of mass-action rate laws and present new solutions for other rate laws. Furthermore, we revisit a known relationship between flux control coefficients and enzyme abundances in optimal metabolic states. We generalize this relationship to models with density constraints on enzymes and metabolites, and present a new ...
Bacterial growth depends crucially on metabolic fluxes, which are limited by the cell’s capacity to ...
Metabolic models are typically characterized by a large number of parameters. Traditionally, metabol...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
This is a chapter from the free textbook "Economic Principles in Cell Biology" In this chapter we d...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Abstract: This paper deals with temporal enzyme distribution in the activation of biochemical pathwa...
Background: In the present article, we propose a method for determining optimal metabolic pathways i...
This paper deals with temporal enzyme distribution in the activation of biochemical pathways. Pathw...
This paper deals with temporal enzyme distribution in the activation of biochemical pathways. Pathw...
This paper deals with temporal enzyme distribution in the activation of biochemical pathways. Pathw...
This paper deals with temporal enzyme distribution in the activation of biochemical pathways. Pathw...
<div><p>Bacterial growth depends crucially on metabolic fluxes, which are limited by the cell’s capa...
In this chapter, we give a short introduction into metabolic pathway modelling using ordinary differ...
Bacterial growth depends crucially on metabolic fluxes, which are limited by the cell’s capacity to ...
Metabolic models are typically characterized by a large number of parameters. Traditionally, metabol...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
This is a chapter from the free textbook "Economic Principles in Cell Biology" In this chapter we d...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Abstract: This paper deals with temporal enzyme distribution in the activation of biochemical pathwa...
Background: In the present article, we propose a method for determining optimal metabolic pathways i...
This paper deals with temporal enzyme distribution in the activation of biochemical pathways. Pathw...
This paper deals with temporal enzyme distribution in the activation of biochemical pathways. Pathw...
This paper deals with temporal enzyme distribution in the activation of biochemical pathways. Pathw...
This paper deals with temporal enzyme distribution in the activation of biochemical pathways. Pathw...
<div><p>Bacterial growth depends crucially on metabolic fluxes, which are limited by the cell’s capa...
In this chapter, we give a short introduction into metabolic pathway modelling using ordinary differ...
Bacterial growth depends crucially on metabolic fluxes, which are limited by the cell’s capacity to ...
Metabolic models are typically characterized by a large number of parameters. Traditionally, metabol...
Specific product formation rates and cellular growth rates are important maximization targets in bio...