Phenotypic engineering by reprogramming gene transcription using novel artificial transcription factors in Escherichia coli

Author:

Lee Ju Young1,Sung Bong Hyun1,Yu Byung Jo1,Lee Jun Hyoung1,Lee Sang Hee1,Kim Mi Sun2,Koob Michael D.3,Kim Sun Chang1

Affiliation:

1. Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon

2. Biomass Team, Korea Institute of Energy Research, Daejeon, Korea

3. Department of Laboratory Medicine and Pathology, Institute of Human Genetics, University of Minnesota, Minneapolis, MN 55455, USA

Abstract

Abstract Now that many genomes have been sequenced and the products of newly identified genes have been annotated, the next goal is to engineer the desired phenotypes in organisms of interest. For the phenotypic engineering of microorganisms, we have developed novel artificial transcription factors (ATFs) capable of reprogramming innate gene expression circuits in Escherichia coli. These ATFs are composed of zinc finger (ZF) DNA-binding proteins, with distinct specificities, fused to an E. coli cyclic AMP receptor protein (CRP). By randomly assembling 40 different types of ZFs, we have constructed more than 6.4 × 104 ATFs that consist of 3 ZF DNA-binding domains and a CRP effector domain. Using these ATFs, we induced various phenotypic changes in E. coli and selected for industrially important traits, such as resistance to heat shock, osmotic pressure and cold shock. Genes associated with the heat-shock resistance phenotype were then characterized. These results and the general applicability of this platform clearly indicate that novel ATFs are powerful tools for the phenotypic engineering of microorganisms and can facilitate microbial functional genomic studies.

Funder

21C Frontier Program of Microbial Genomics and Applications

Ministry of Science and Technology of Korea

Korea Science & Engineering Foundation Grant

Basic Research Program of the Korea Research Foundation Grant

Publisher

Oxford University Press (OUP)

Subject

Genetics

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