Roadmap to Building a Cell

An Evolutionary Approach

Journal Article (2020)
Author(s)

Z. Abil (Kavli institute of nanoscience Delft, TU Delft - BN/Christophe Danelon Lab)

Christophe Danelon (TU Delft - BN/Christophe Danelon Lab, Kavli institute of nanoscience Delft)

Research Group
BN/Christophe Danelon Lab
Copyright
© 2020 Z. Abil, C.J.A. Danelon
DOI related publication
https://doi.org/10.3389/fbioe.2020.00927
More Info
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Publication Year
2020
Language
English
Copyright
© 2020 Z. Abil, C.J.A. Danelon
Research Group
BN/Christophe Danelon Lab
Volume number
8
Reuse Rights

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Abstract

Laboratory synthesis of an elementary biological cell from isolated components may aid in understanding of the fundamental principles of life and will provide a platform for a range of bioengineering and medical applications. In essence, building a cell consists in the integration of cellular modules into system’s level functionalities satisfying a definition of life. To achieve this goal, we propose in this perspective to undertake a semi-rational, system’s level evolutionary approach. The strategy would require iterative cycles of genetic integration of functional modules, diversification of hereditary information, compartmentalized gene expression, selection/screening, and possibly, assistance from open-ended evolution. We explore the underlying challenges to each of these steps and discuss possible solutions toward the bottom-up construction of an artificial living cell.