首页    期刊浏览 2024年11月30日 星期六
登录注册

文章基本信息

  • 标题:Rapid acquisition and model-based analysis of cell-free transcription–translation reactions from nonmodel bacteria
  • 本地全文:下载
  • 作者:Simon J. Moore ; James T. MacDonald ; Sarah Wienecke
  • 期刊名称:Proceedings of the National Academy of Sciences
  • 印刷版ISSN:0027-8424
  • 电子版ISSN:1091-6490
  • 出版年度:2018
  • 卷号:115
  • 期号:19
  • 页码:E4340-E4349
  • DOI:10.1073/pnas.1715806115
  • 语种:English
  • 出版社:The National Academy of Sciences of the United States of America
  • 摘要:Native cell-free transcription–translation systems offer a rapid route to characterize the regulatory elements (promoters, transcription factors) for gene expression from nonmodel microbial hosts, which can be difficult to assess through traditional in vivo approaches. One such host, Bacillus megaterium , is a giant Gram-positive bacterium with potential biotechnology applications, although many of its regulatory elements remain uncharacterized. Here, we have developed a rapid automated platform for measuring and modeling in vitro cell-free reactions and have applied this to B. megaterium to quantify a range of ribosome binding site variants and previously uncharacterized endogenous constitutive and inducible promoters. To provide quantitative models for cell-free systems, we have also applied a Bayesian approach to infer ordinary differential equation model parameters by simultaneously using time-course data from multiple experimental conditions. Using this modeling framework, we were able to infer previously unknown transcription factor binding affinities and quantify the sharing of cell-free transcription–translation resources (energy, ribosomes, RNA polymerases, nucleotides, and amino acids) using a promoter competition experiment. This allows insights into resource limiting-factors in batch cell-free synthesis mode. Our combined automated and modeling platform allows for the rapid acquisition and model-based analysis of cell-free transcription–translation data from uncharacterized microbial cell hosts, as well as resource competition within cell-free systems, which potentially can be applied to a range of cell-free synthetic biology and biotechnology applications.
  • 关键词:in vitro transcription–translation ; cell-free synthetic biology ; Bacillus ; modeling ; automation
国家哲学社会科学文献中心版权所有