Fu_2024_J.Hazard.Mater_473_134716

Reference

Title : Two different types of hydrolases co-degrade ochratoxin A in a highly efficient degradation strain Lysobacter sp. CW239 - Fu_2024_J.Hazard.Mater_473_134716
Author(s) : Fu X , Fei Q , Zhang X , Li N , Zhang L , Zhou Y
Ref : J Hazard Mater , 473 :134716 , 2024
Abstract :

Ochratoxin A (OTA) is a toxic secondary metabolite that widely contaminates agro-products and poses a significant dietary risk to human health. Previously, a carboxypeptidase CP4 was characterized for OTA degradation in Lysobacter sp. CW239, but the degradation activity was much lower than its host strain CW239. In this study, an amidohydrolase ADH2 was screened for OTA hydrolysis in this strain. The result showed that 50 microg/L OTA was completely degraded by 1.0 microg/mL rADH2 within 5 min, indicating ultra-efficient activity. Meanwhile, the two hydrolases (i.e., CP4 and ADH2) in the strain CW239 showed the same degradation manner, which transformed the OTA to ochratoxin alpha (OTalpha) and l-beta-phenylalanine. Gene mutants (deltacp4, deltaadh2 and deltacp4-adh2) testing result showed that OTA was co-degraded by carboxypeptidase CP4 and amidohydrolase ADH2, and the two hydrolases are sole agents in strain CW239 for OTA degradation. Hereinto, the ADH2 was the overwhelming efficient hydrolase, and the two types of hydrolases co-degraded OTA in CW239 by synergistic effect. The results of this study are highly significant to ochratoxin A contamination control during agro-products production and postharvest.

PubMedSearch : Fu_2024_J.Hazard.Mater_473_134716
PubMedID: 38797074

Related information

Substrate Ochratoxin-A

Citations formats

Fu X, Fei Q, Zhang X, Li N, Zhang L, Zhou Y (2024)
Two different types of hydrolases co-degrade ochratoxin A in a highly efficient degradation strain Lysobacter sp. CW239
J Hazard Mater 473 :134716

Fu X, Fei Q, Zhang X, Li N, Zhang L, Zhou Y (2024)
J Hazard Mater 473 :134716