Literature DB >> 24303785

Linear DNA for rapid prototyping of synthetic biological circuits in an Escherichia coli based TX-TL cell-free system.

Zachary Z Sun1, Enoch Yeung, Clarmyra A Hayes, Vincent Noireaux, Richard M Murray.   

Abstract

Accelerating the pace of synthetic biology experiments requires new approaches for rapid prototyping of circuits from individual DNA regulatory elements. However, current testing standards require days to weeks due to cloning and in vivo transformation. In this work, we first characterized methods to protect linear DNA strands from exonuclease degradation in an Escherichia coli based transcription-translation cell-free system (TX-TL), as well as mechanisms of degradation. This enabled the use of linear DNA PCR products in TX-TL. We then compared expression levels and binding dynamics of different promoters on linear DNA and plasmid DNA. We also demonstrated assembly technology to rapidly build circuits entirely in vitro from separate parts. Using this strategy, we prototyped a four component genetic switch in under 8 h entirely in vitro. Rapid in vitro assembly has future applications for prototyping multiple component circuits if combined with predictive computational models.

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Year:  2013        PMID: 24303785     DOI: 10.1021/sb400131a

Source DB:  PubMed          Journal:  ACS Synth Biol        ISSN: 2161-5063            Impact factor:   5.110


  62 in total

Review 1.  Synthetic biology devices for in vitro and in vivo diagnostics.

Authors:  Shimyn Slomovic; Keith Pardee; James J Collins
Journal:  Proc Natl Acad Sci U S A       Date:  2015-11-24       Impact factor: 11.205

2.  Cell-free Protein Expression Using the Rapidly Growing Bacterium Vibrio natriegens.

Authors:  Daniel J Wiegand; Henry H Lee; Nili Ostrov; George M Church
Journal:  J Vis Exp       Date:  2019-03-14       Impact factor: 1.355

3.  Creating small transcription activating RNAs.

Authors:  James Chappell; Melissa K Takahashi; Julius B Lucks
Journal:  Nat Chem Biol       Date:  2015-02-02       Impact factor: 15.040

4.  Rapid and Scalable Characterization of CRISPR Technologies Using an E. coli Cell-Free Transcription-Translation System.

Authors:  Ryan Marshall; Colin S Maxwell; Scott P Collins; Thomas Jacobsen; Michelle L Luo; Matthew B Begemann; Benjamin N Gray; Emma January; Anna Singer; Yonghua He; Chase L Beisel; Vincent Noireaux
Journal:  Mol Cell       Date:  2018-01-04       Impact factor: 17.970

5.  Short DNA containing χ sites enhances DNA stability and gene expression in E. coli cell-free transcription-translation systems.

Authors:  Ryan Marshall; Colin S Maxwell; Scott P Collins; Chase L Beisel; Vincent Noireaux
Journal:  Biotechnol Bioeng       Date:  2017-05-23       Impact factor: 4.530

6.  Cell-free gene-regulatory network engineering with synthetic transcription factors.

Authors:  Zoe Swank; Nadanai Laohakunakorn; Sebastian J Maerkl
Journal:  Proc Natl Acad Sci U S A       Date:  2019-03-08       Impact factor: 11.205

Review 7.  Cell-Free Synthetic Biology: Engineering Beyond the Cell.

Authors:  Jessica G Perez; Jessica C Stark; Michael C Jewett
Journal:  Cold Spring Harb Perspect Biol       Date:  2016-12-01       Impact factor: 10.005

8.  PERSIA for Direct Fluorescence Measurements of Transcription, Translation, and Enzyme Activity in Cell-Free Systems.

Authors:  Scott Wick; David I Walsh; Johanna Bobrow; Kimberly Hamad-Schifferli; David S Kong; Todd Thorsen; Keri Mroszczyk; Peter A Carr
Journal:  ACS Synth Biol       Date:  2019-04-30       Impact factor: 5.110

9.  In Vitro Reconstruction of Nonribosomal Peptide Biosynthesis Directly from DNA Using Cell-Free Protein Synthesis.

Authors:  Anthony W Goering; Jian Li; Ryan A McClure; Regan J Thomson; Michael C Jewett; Neil L Kelleher
Journal:  ACS Synth Biol       Date:  2016-08-09       Impact factor: 5.110

10.  Synthesis of Infectious Bacteriophages in an E. coli-based Cell-free Expression System.

Authors:  Mark Rustad; Allen Eastlund; Ryan Marshall; Paul Jardine; Vincent Noireaux
Journal:  J Vis Exp       Date:  2017-08-17       Impact factor: 1.355

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