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TitleProtein structural biology using cell-free platform from wheat germ.
Journal, issue, pagesAdv Struct Chem Imaging, Vol. 4, Issue 1, Page 13, Year 2018
Publish dateNov 10, 2018
AuthorsIrina V Novikova / Noopur Sharma / Trevor Moser / Ryan Sontag / Yan Liu / Michael J Collazo / Duilio Cascio / Tolou Shokuhfar / Hanjo Hellmann / Michael Knoblauch / James E Evans /
PubMed AbstractOne of the biggest bottlenecks for structural analysis of proteins remains the creation of high-yield and high-purity samples of the target protein. Cell-free protein synthesis technologies are ...One of the biggest bottlenecks for structural analysis of proteins remains the creation of high-yield and high-purity samples of the target protein. Cell-free protein synthesis technologies are powerful and customizable platforms for obtaining functional proteins of interest in short timeframes, while avoiding potential toxicity issues and permitting high-throughput screening. These methods have benefited many areas of genomic and proteomics research, therapeutics, vaccine development and protein chip constructions. In this work, we demonstrate a versatile and multiscale eukaryotic wheat germ cell-free protein expression pipeline to generate functional proteins of different sizes from multiple host organism and DNA source origins. We also report on a robust purification procedure, which can produce highly pure (> 98%) proteins with no specialized equipment required and minimal time invested. This pipeline successfully produced and analyzed proteins in all three major geometry formats used for structural biology including single particle analysis with electron microscopy, and both two-dimensional and three-dimensional protein crystallography. The flexibility of the wheat germ system in combination with the multiscale pipeline described here provides a new workflow for rapid production and purification of samples that may not be amenable to other recombinant approaches for structural characterization.
External linksAdv Struct Chem Imaging / PubMed:30524935 / PubMed Central
MethodsEM (single particle)
Resolution15.0 Å
Structure data

EMDB-9190:
Cell-free-expressed Pyridoxal 5'-phosphate synthase-like subunit (PDX1.2) from Arabidopsis thaliana
Method: EM (single particle) / Resolution: 15.0 Å

Source
  • Arabidopsis thaliana (thale cress)

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