4.8 Article

Ribosome Composition Maximizes Cellular Growth Rates in E. coli

期刊

PHYSICAL REVIEW LETTERS
卷 125, 期 2, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.125.028103

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资金

  1. Zuckerman STEM postdoctoral fellowship
  2. U.S. Fulbright Program in Israel
  3. Azrieli Foundation
  4. Raymond and Beverly Sackler Center for Computational Molecular and Materials Science at Tel Aviv University
  5. Israel Science Foundation [394/19]

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Bacterial ribosomes are composed of one-third protein and two-thirds RNA by mass. The predominance of RNA is often attributed to a primordial RNA world, but why exactly two-thirds remains a long-standing mystery. Here we present a quantitative analysis, based on the kinetics of ribosome self-replication, demonstrating that the 1: 2 protein-to-RNA mass ratio uniquely maximizes cellular growth rates in E. coli. A previously unrecognized growth law, and an invariant of bacterial growth, also follow from our analysis. The growth law reveals that the ratio between the number of ribosomes and the number of polymerases making ribosomal RNA is proportional to the cellular doubling time. The invariant is conserved across growth conditions and specifies how key microscopic parameters in the cell, such as transcription and translation rates, are coupled to cellular physiology. Quantitative predictions from the growth law and invariant are shown to be in excellent agreement with E. coli data despite having no fitting parameters. Our analysis can be readily extended to other bacteria once data become available.

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