J 2024

Bacterial Lactonases ZenA with Noncanonical Structural Features Hydrolyze the Mycotoxin Zearalenone

FRUHAUF, Sebastian; Dominic PUHRINGER; Michaela THAMHESL; Patricia FAJTL; Elisavet KUNZ-VEKIRU et. al.

Basic information

Original name

Bacterial Lactonases ZenA with Noncanonical Structural Features Hydrolyze the Mycotoxin Zearalenone

Authors

FRUHAUF, Sebastian; Dominic PUHRINGER; Michaela THAMHESL; Patricia FAJTL; Elisavet KUNZ-VEKIRU; Andreas HOBARTNER-GUSSL; Gerd SCHATZMAYR; Gerhard ADAM; Jiří DAMBORSKÝ; Kristina DJINOVIC-CARUGO; Zbyněk PROKOP and Wulf-Dieter MOLL

Edition

ACS Catalysis, Washington, D.C. American Chemical Society, 2024, 2155-5435

Other information

Language

English

Type of outcome

Article in a journal

Country of publisher

United States of America

Confidentiality degree

is not subject to a state or trade secret

References:

Organization

Přírodovědecká fakulta – Repository – Repository

UT WoS

001166848600001

EID Scopus

2-s2.0-85186096757

Keywords in English

zearalenone; mycotoxin; lactonase; carboxylesterase; hydrolase; kinetics; presteady-state; Rhodococcus erythropolis

Links

EF17_043/0009632, research and development project. LM2023055, research and development project. LX22NPO5107, research and development project. 857560, interní kód Repo. RECETOX RI II, large research infrastructures.
Changed: 25/2/2025 00:51, RNDr. Daniel Jakubík

Abstract

V originále

Zearalenone (ZEN) is a mycoestrogenic polyketide produced by Fusarium graminearum and other phytopathogenic members of the genus Fusarium. Contamination of cereals with ZEN is frequent, and hydrolytic detoxification with fungal lactonases has been explored. Here, we report the isolation of a bacterial strain, Rhodococcus erythropolis PFA D8-1, with ZEN hydrolyzing activity, cloning of the gene encoding alpha/beta hydrolase ZenA encoded on the linear megaplasmid pSFRL1, and biochemical characterization of nine homologues. Furthermore, we report site-directed mutagenesis as well as structural analysis of the dimeric ZenA(Re) of R. erythropolis and the more thermostable, tetrameric ZenA(Scfl) of Streptomyces coelicoflavus with and without bound ligands. The X-ray crystal structures not only revealed canonical features of alpha/beta hydrolases with a cap domain including a Ser-His-Asp catalytic triad but also unusual features including an uncommon oxyanion hole motif and a peripheral, short antiparallel beta-sheet involved in tetramer interactions. Presteady-state kinetic analyses for ZenA(Re) and ZenA(Scfl) identified balanced rate-limiting steps of the reaction cycle, which can change depending on temperature. Some new bacterial ZEN lactonases have lower K-M and higher k(cat) than the known fungal ZEN lactonases and may lend themselves to enzyme technology development for the degradation of ZEN in feed or food.

Files attached