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An economic demand-based framework for prioritization strategies in response to transient amino acid limitations

Biology

An economic demand-based framework for prioritization strategies in response to transient amino acid limitations

R. Gupta, S. Adhikary, et al.

This fascinating study conducted by Ritu Gupta, Swagata Adhikary, Nidhi Dalpatraj, and Sunil Laxman explores how yeast cells intelligently restore essential amino acids when their supply is disrupted. The researchers quantified the costs and demands of amino acid biosynthesis, revealing that metabolic priorities lead to a remarkable restoration response, particularly for arginine. Discover the implications for metabolic engineering and amino acid responses in this compelling research!

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~3 min • Beginner • English
Abstract
Cells contain disparate amounts of distinct amino acids, each of which has different metabolic and chemical origins, but the supply cost vs demand requirements of each is unclear. Here, using yeast we quantify the restoration-responses after disrupting amino acid supply, and uncover a hierarchically prioritized restoration strategy for distinct amino acids. We comprehensively calculate individual amino acid biosynthetic supply costs, quantify total demand for an amino acid, and estimate cumulative supply/demand requirements for each amino acid. Through this, we discover that the restoration priority is driven by the gross demand for an amino acid, which is itself coupled to low supply costs for that amino acid. Demand from metabolic requirements dominate the demand-pulls for an amino acid, as exemplified by the largest restoration response upon disrupting arginine supply. Collectively, this demand-driven framework that drives the amino acid economy can identify novel amino acid responses, and help design metabolic engineering applications.
Publisher
Nature Communications
Published On
Aug 23, 2024
Authors
Ritu Gupta, Swagata Adhikary, Nidhi Dalpatraj, Sunil Laxman
Tags
yeast cells
amino acids
metabolic requirements
arginine restoration
biosynthetic supply costs
metabolic engineering
amino acid demand
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