Siirry päänavigointiin Siirry hakuun Siirry pääsisältöön

Substrate specificity mapping of fungal CAZy AA3_2 oxidoreductases

  • Hongbo Zhao*
  • , Johanna Karppi
  • , Owen Mototsune
  • , Daria Poshina
  • , Jenny Svartström
  • , Thi Truc Minh Nguyen
  • , Tri Minh Vo
  • , Adrian Tsang
  • , Emma Master
  • , Maija Tenkanen
  • *Tämän työn vastaava kirjoittaja
  • University of Toronto
  • Concordia University
  • University of Helsinki

Tutkimustuotos: LehtiartikkeliArticleScientificvertaisarvioitu

3 Sitaatiot (Scopus)
67 Lataukset (Pure)

Abstrakti

Background: Oxidative enzymes targeting lignocellulosic substrates are presently classified into various auxiliary activity (AA) families within the carbohydrate-active enzyme (CAZy) database. Among these, the fungal AA3 glucose–methanol–choline (GMC) oxidoreductases with varying auxiliary activities are attractive sustainable biocatalysts and important for biological function. CAZy AA3 enzymes are further subdivided into four subfamilies, with the large AA3_2 subfamily displaying diverse substrate specificities. However, limited numbers of enzymes in the AA3_2 subfamily are currently biochemically characterized, which limits the homology-based mining of new AA3_2 oxidoreductases. Importantly, novel enzyme activities may be discovered from the uncharacterized parts of this large subfamily. 

Results: In this study, phylogenetic analyses employing a sequence similarity network (SSN) and maximum likelihood trees were used to cluster AA3_2 sequences. A total of 27 AA3_2 proteins representing different clusters were selected for recombinant production. Among them, seven new AA3_2 oxidoreductases were successfully produced, purified, and characterized. These enzymes included two glucose dehydrogenases (TaGdhA and McGdhA), one glucose oxidase (ApGoxA), one aryl alcohol oxidase (PsAaoA), two aryl alcohol dehydrogenases (AsAadhA and AsAadhB), and one novel oligosaccharide (gentiobiose) dehydrogenase (KiOdhA). Notably, two dehydrogenases (TaGdhA and KiOdhA) were found with the ability to utilize phenoxy radicals as an electron acceptor. Interestingly, phenoxy radicals were found to compete with molecular oxygen in aerobic environments when serving as an electron acceptor for two oxidases (ApGoxA and PsAaoA), which sheds light on their versatility. Furthermore, the molecular determinants governing their diverse enzymatic functions were discussed based on the homology model generated by AlphaFold. 

Conclusions: The phylogenetic analyses and biochemical characterization of AA3_2s provide valuable guidance for future investigation of AA3_2 sequences and proteins. A clear correlation between enzymatic function and SSN clustering was observed. The discovery and biochemical characterization of these new AA3_2 oxidoreductases brings exciting prospects for biotechnological applications and broadens our understanding of their biological functions.

AlkuperäiskieliEnglanti
Artikkeli47
Sivumäärä22
JulkaisuBiotechnology for Biofuels and Bioproducts
Vuosikerta17
Numero1
DOI - pysyväislinkit
TilaJulkaistu - 27 maalisk. 2024
OKM-julkaisutyyppiA1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä

Rahoitus

Open Access funding provided by University of Helsinki (including Helsinki University Central Hospital). This work was conducted with funding from the Academy of Finland for COCOA (project codes 308996 and 308997), Novo Nordisk Foundation for BIOSEMBL, and Finnish Cultural Foundation. Open access funded by Helsinki University Library.

YK:n kestävän kehityksen tavoitteet

Tämä tuotos edistää seuraavia kestävän kehityksen tavoitteita:

  1. SDG 12 – Vastuullinen kulutus ja tuotanto
    SDG 12 – Vastuullinen kulutus ja tuotanto

Sormenjälki

Sukella tutkimusaiheisiin 'Substrate specificity mapping of fungal CAZy AA3_2 oxidoreductases'. Ne muodostavat yhdessä ainutlaatuisen sormenjäljen.
  • BIOSEMBL: Transaminases for BIOcatalytic cascades for hemicellulose reasSEMBLy

    Master, E. (Vastuullinen johtaja), Pohto, A. (Projektin jäsen), Dahiya, D. (Projektin jäsen), Parviainen, T. (Projektin jäsen), Haavisto, I. (Projektin jäsen), Ioannou, E. (Projektin jäsen) & Leamon, A. K. M. A. A. (Projektin jäsen)

    31/10/201830/04/2022

    Projekti: Other external funding: Other foreign funding

  • Oksidoreduktaasien valjastaminen oligosakkaridien aktivointiin

    Master, E. (Vastuullinen johtaja), Karppi, J. (Projektin jäsen), Ioannou, E. (Projektin jäsen) & Mollerup, F. (Projektin jäsen)

    01/09/201731/12/2020

    Projekti: Academy of Finland: Other research funding

Siteeraa tätä