Modeling Cell-Free Protein Synthesis Systems-Approaches and Applications

Front Bioeng Biotechnol. 2020 Oct 28:8:584178. doi: 10.3389/fbioe.2020.584178. eCollection 2020.

Abstract

In vitro systems are ideal setups to investigate the basic principles of biochemical reactions and subsequently the bricks of life. Cell-free protein synthesis (CFPS) systems mimic the transcription and translation processes of whole cells in a controlled environment and allow the detailed study of single components and reaction networks. In silico studies of CFPS systems help us to understand interactions and to identify limitations and bottlenecks in those systems. Black-box models laid the foundation for understanding the production and degradation dynamics of macromolecule components such as mRNA, ribosomes, and proteins. Subsequently, more sophisticated models revealed shortages in steps such as translation initiation and tRNA supply and helped to partially overcome these limitations. Currently, the scope of CFPS modeling has broadened to various applications, ranging from the screening of kinetic parameters to the stochastic analysis of liposome-encapsulated CFPS systems and the assessment of energy supply properties in combination with flux balance analysis (FBA).

Keywords: cell-free synthetic biology; in silico; in vitro protein synthesis; mathematical model; modeling; ribosomes; transcription and translation.

Publication types

  • Review