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Nitrogen Metabolism in Pseudomonas putida: Functional Analysis Using Random Barcode Transposon Sequencing

  • Matthias Schmidt
  • , Allison N. Pearson
  • , Matthew R. Incha
  • , Mitchell G. Thompson
  • , Edward E.K. Baidoo
  • , Ramu Kakumanu
  • , Aindrila Mukhopadhyay
  • , Patrick M. Shih
  • , Adam M. Deutschbauer
  • , Lars M. Blank
  • , Jay D. Keasling*
  • *Corresponding author for this work
    • RWTH Aachen University
    • University of California at Berkeley
    • Lawrence Berkeley National Laboratory

    Research output: Contribution to journalJournal articleResearchpeer-review

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    Abstract

    Pseudomonas putida KT2440 has long been studied for its diverse and robust metabolisms, yet many genes and proteins imparting these growth capacities remain uncharacterized. Using pooled mutant fitness assays, we identified genes and proteins involved in the assimilation of 52 different nitrogen containing compounds. To assay amino acid biosynthesis, 19 amino acid drop-out conditions were also tested. From these 71 conditions, significant fitness phenotypes were elicited in 672 different genes including 100 transcriptional regulators and 112 transport-related proteins. We divide these conditions into 6 classes, and propose assimilatory pathways for the compounds based on this wealth of genetic data. To complement these data, we characterize the substrate range of three promiscuous aminotransferases relevant to metabolic engineering efforts in vitro. Furthermore, we examine the specificity of five transcriptional regulators, explaining some fitness data results and exploring their potential to be developed into useful synthetic biology tools. In addition, we use manifold learning to create an interactive visualization tool for interpreting our BarSeq data, which will improve the accessibility and utility of this work to other researchers.

    Original languageEnglish
    Article numbere02430-21
    JournalApplied and Environmental Microbiology
    Volume88
    Issue number7
    Number of pages30
    ISSN0099-2240
    DOIs
    Publication statusPublished - 2022

    Keywords

    • Amino acid
    • Aminotransferase
    • Aminotransferases
    • BarSeq
    • Biosensor
    • Biosensors
    • Lactam
    • Metabolism
    • Nitrate
    • Nitrite
    • Nitrogen
    • Nitrogen metabolism
    • Nucleotide
    • Polyamine
    • Pseudomonas putida
    • RB-TnSeq
    • t-SNE
    • Transposon

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