Activity screening of environmental metagenomic libraries reveals novel carboxylesterase families

  • Anna Popovic
  • , Tran Hai
  • , Anatoly Tchigvintsev
  • , Mahbod Hajighasemi
  • , Boguslaw Nocek
  • , Anna N. Khusnutdinova
  • , Greg Brown
  • , Julia Glinos
  • , Robert Flick
  • , Tatiana Skarina
  • , Tatyana Chernikova
  • , Veronica Yim
  • , Thomas Bruls
  • , Denis Le Paslier
  • , Michail M. Yakimov
  • , Andrzej Joachimiak
  • , Manuel Ferrer
  • , Olga Golyshina
  • , Alexei Savchenko
  • , Peter Golyshin
  • A. F. Yakunin

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    370 Wedi eu Llwytho i Lawr (Pure)

    Crynodeb

    Metagenomics has made accessible an enormous reserve of global biochemical diversity. To tap into this vast resource of novel enzymes, we have screened over one million clones from metagenome DNA libraries derived from sixteen different environments for carboxylesterase activity and identified 714 positive hits. We have validated the esterase activity of 80 selected genes, which belong to 17 different protein families including unknown and cyclase-like proteins. Three metagenomic enzymes exhibited lipase activity, and seven proteins showed polyester depolymerization activity against polylactic acid and polycaprolactone. Detailed biochemical characterization of four new enzymes revealed their substrate preference, whereas their catalytic residues were identified using site-directed mutagenesis. The crystal structure of the metal-ion dependent esterase MGS0169 from the amidohydrolase superfamily revealed a novel active site with a bound unknown ligand. Thus, activity-centered metagenomics has revealed diverse enzymes and novel families of microbial carboxylesterases, whose activity could not have been predicted using bioinformatics tools.
    Iaith wreiddiolSaesneg
    Rhif yr erthygl44103
    CyfnodolynScientific Reports
    Cyfrol7
    Rhif cyhoeddi44103
    Dyddiad ar-lein cynnar8 Maw 2017
    Dynodwyr Gwrthrych Digidol (DOIs)
    StatwsCyhoeddwyd - Maw 2017

    Ôl bys

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