Protocols for Implementing an <em>Escherichia coli</em> Based TX-TL Cell-Free Expression System for Synthetic Biology

Протоколы внедрения клеточно-свободной системы экспрессии TX-TL на основе Escherichia coli для синтетической биологии
Zachary Z. Sun, Clarmyra A. Hayes, Jonghyeon Shin, Filippo Caschera, Richard M. Murray, Vincent Noireaux
2013-09-16

Escherichia coli TX-TLT7 RNA polymerasecell-free expression systemendogenous transcription-translationlac/tet repressors
Ideal cell-free expression systems can theoretically emulate an in vivo cellular environment in a controlled in vitro platform. This is useful for expressing proteins and genetic circuits in a controlled manner as well as for providing a prototyping environment for synthetic biology. To achieve the latter goal, cell-free expression systems that preserve endogenous Escherichia coli transcription-translation mechanisms are able to more accurately reflect in vivo cellular dynamics than those based on T7 RNA polymerase transcription. We describe the preparation and execution of an efficient endogenous E. coli based transcription-translation (TX-TL) cell-free expression system that can produce equivalent amounts of protein as T7-based systems at a 98% cost reduction to similar commercial systems. The preparation of buffers and crude cell extract are described, as well as the execution of a three tube TX-TL reaction. The entire protocol takes five days to prepare and yields enough material for up to 3000 single reactions in one preparation. Once prepared, each reaction takes under 8 hr from setup to data collection and analysis. Mechanisms of regulation and transcription exogenous to E. coli, such as lac/tet repressors and T7 RNA polymerase, can be supplemented. Endogenous properties, such as mRNA and DNA degradation rates, can also be adjusted. The TX-TL cell-free expression system has been demonstrated for large-scale circuit assembly, exploring biological phenomena, and expression of proteins under both T7- and endogenous promoters. Accompanying mathematical models are available. The resulting system has unique applications in synthetic biology as a prototyping environment, or "TX-TL biomolecular breadboard."
1
An endogenous E. coli-based TX-TL cell-free expression system is described that preserves native transcription-translation mechanisms, better reflecting in vivo dynamics than T7-based systems.
2
Individual TX-TL reactions require under 8 hours from setup to data collection and analysis.
3
The full protocol (buffers, crude extract, three-tube TX-TL reaction) takes five days to prepare and yields enough material for up to 3000 single reactions per preparation.
4
The system produces equivalent amounts of protein as T7-based systems while achieving a 98% cost reduction compared to similar commercial systems.
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The system supports supplementation with exogenous regulators (e.g., lac/tet repressors, T7 RNA polymerase), tuning of endogenous properties (mRNA and DNA degradation rates), and has been demonstrated for large-scale circuit assembly and protein expression under both promoter types.

Endogenous Escherichia coli-based transcription–translation (TX-TL) cell-free expression system (buffers and crude cell extract for three-tube reactions)

Protocols for preparation and execution enabling efficient protein and genetic-circuit expression, cost-effective production scale (up to ~3000 reactions per prep), adjustable regulatory components and degradation rates, and application as a TX-TL prototyping 'biomolecular breadboard'

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2013-09-16
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Zachary Z. Sun
Clarmyra A. Hayes
Jonghyeon Shin
Filippo Caschera
Richard M. Murray
Vincent Noireaux
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