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Three-Step Enzymatic Remodeling of Chitin into Bioactive Chitooligomers.


ABSTRACT: Here we describe a complex enzymatic approach to the efficient transformation of abundant waste chitin, a byproduct of the food industry, into valuable chitooligomers with a degree of polymerization (DP) ranging from 6 to 11. This method involves a three-step process: initial hydrolysis of chitin using engineered variants of a novel fungal chitinase from Talaromyces flavus to generate low-DP chitooligomers, followed by an extension to the desired DP using the high-yielding Y445N variant of β-N-acetylhexosaminidase from Aspergillus oryzae, achieving yields of up to 57%. Subsequently, enzymatic deacetylation of chitooligomers with DP 6 and 7 was accomplished using peptidoglycan deacetylase from Bacillus subtilis BsPdaC. The innovative enzymatic procedure demonstrates a sustainable and feasible route for converting waste chitin into unavailable bioactive chitooligomers potentially applicable as natural pesticides in ecological and sustainable agriculture.

SUBMITTER: Meszaros Z 

PROVIDER: S-EPMC11261597 | biostudies-literature | 2024 Jul

REPOSITORIES: biostudies-literature

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Three-Step Enzymatic Remodeling of Chitin into Bioactive Chitooligomers.

Mészáros Zuzana Z   Kulik Natalia N   Petrásková Lucie L   Bojarová Pavla P   Texidó Mònica M   Planas Antoni A   Křen Vladimír V   Slámová Kristýna K  

Journal of agricultural and food chemistry 20240708 28


Here we describe a complex enzymatic approach to the efficient transformation of abundant waste chitin, a byproduct of the food industry, into valuable chitooligomers with a degree of polymerization (DP) ranging from 6 to 11. This method involves a three-step process: initial hydrolysis of chitin using engineered variants of a novel fungal chitinase from <i>Talaromyces flavus</i> to generate low-DP chitooligomers, followed by an extension to the desired DP using the high-yielding Y445N variant o  ...[more]

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