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Heterogeneously deacetylated chitosans possess an unexpected regular pattern favoring acetylation at every third position

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  • Margareta J. Hellmann

    (University of Münster)

  • Dominique Gillet

    (La Ville Es Comte)

  • Stéphane Trombotto

    (Université Jean Monnet Saint-Etienne)

  • Sonja Raetz

    (University of Münster)

  • Bruno M. Moerschbacher

    (University of Münster)

  • Stefan Cord-Landwehr

    (University of Münster)

Abstract

Chitosans are promising biopolymers for diverse applications, with material properties and bioactivities depending i.a. on their pattern of acetylation (PA). Commercial chitosans are typically produced by heterogeneous deacetylation of chitin, but whether this process yields chitosans with a random or block-wise PA has been debated for decades. Using a combination of recently developed in vitro assays and in silico modeling surprisingly revealed that both hypotheses are wrong; instead, we found a more regular PA in heterogeneously deacetylated chitosans, with acetylated units overrepresented at every third position in the polymer chain. Compared to random-PA chitosans produced by homogeneous deacetylation of chitin or chemical N-acetylation of polyglucosamine, this regular PA increases the elicitation activity in plants, and generates different product profiles and distributions after enzymatic and chemical cleavage. A regular PA may be beneficial for some applications but detrimental for others, stressing the relevance of the production process for product development.

Suggested Citation

  • Margareta J. Hellmann & Dominique Gillet & Stéphane Trombotto & Sonja Raetz & Bruno M. Moerschbacher & Stefan Cord-Landwehr, 2024. "Heterogeneously deacetylated chitosans possess an unexpected regular pattern favoring acetylation at every third position," Nature Communications, Nature, vol. 15(1), pages 1-11, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-50857-1
    DOI: 10.1038/s41467-024-50857-1
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    References listed on IDEAS

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    1. Sruthi Sreekumar & Jasper Wattjes & Anna Niehues & Tamara Mengoni & Ana C. Mendes & Edwin R. Morris & Francisco M. Goycoolea & Bruno M. Moerschbacher, 2022. "Biotechnologically produced chitosans with nonrandom acetylation patterns differ from conventional chitosans in properties and activities," Nature Communications, Nature, vol. 13(1), pages 1-18, December.
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