Deciphering the ChitoCode: fungal chitins and chitosans as functional biopolymers

被引:15
作者
Cord-Landwehr S. [1 ]
Moerschbacher B.M. [1 ]
机构
[1] Institute for Biology and Biotechnology of Plants, University of Münster, Schlossplatz 8, Münster
关键词
D O I
10.1186/s40694-021-00127-2
中图分类号
学科分类号
摘要
Chitins and chitosans are among the most widespread and versatile functional biopolymers, with interesting biological activities and superior material properties. While chitins are evolutionary ancient and present in many eukaryotes except for higher plants and mammals, the natural distribution of chitosans, i.e. extensively deacetylated derivatives of chitin, is more limited. Unequivocal evidence for its presence is only available for fungi where chitosans are produced from chitin by the action of chitin deacetylases. However, neither the structural details such as fraction and pattern of acetylation nor the physiological roles of natural chitosans are known at present. We hypothesise that the chitin deacetylases are generating chitins and chitosans with specific acetylation patterns and that these provide information for the interaction with specific chitin- and chitosan-binding proteins. These may be structural proteins involved in the assembly of the complex chitin- and chitosan-containing matrices such as fungal cell walls and insect cuticles, chitin- and chitosan-modifying and -degrading enzymes such as chitin deacetylases, chitinases, and chitosanases, but also chitin- and chitosan-recognising receptors of the innate immune systems of plants, animals, and humans. The acetylation pattern, thus, may constitute a kind of ‘ChitoCode’, and we are convinced that new in silico, in vitro, and in situ analytical tools as well as new synthetic methods of enzyme biotechnology and organic synthesis are currently offering an unprecedented opportunity to decipher this code. We anticipate a deeper understanding of the biology of chitin- and chitosan-containing matrices, including their synthesis, assembly, mineralisation, degradation, and perception. This in turn will improve chitin and chitosan biotechnology and the development of reliable chitin- and chitosan-based products and applications, e.g. in medicine and agriculture, food and feed sciences, as well as cosmetics and material sciences. © 2021, The Author(s).
引用
收藏
相关论文
共 76 条
  • [1] Broek L.A.M., Boeriu C.G., Chitin and Chitosan., (2019)
  • [2] Wattjes J., Sreekumar S., Richter C., Cord-Landwehr S., Singh R., El Gueddari N.E., Et al., Patterns matter part 1: Chitosan polymers with non-random patterns of acetylation, React Funct Polym, 151, Special issue: Chitosan for the future, (2020)
  • [3] Cord-Landwehr S., Richter C., Wattjes J., Sreekumar S., Singh R., Basa S., Et al., Patterns matter part 2: Chitosan oligomers with defined patterns of acetylation, React Funct Polym, 151, Special issue: Chitosan for the future, (2020)
  • [4] Cord-Landwehr S., Niehues A., Wattjes J., Moerschbacher B.M., New developments in the analysis of partially acetylated chitosan polymers and oligomers, Chitin and Chitosan: Properties and Applications, pp. 81-95, (2019)
  • [5] Varum K.M., Anthonsen M.W., Grasdalen H., Smidsrod O., 13C-N.m.r. studies of the acetylation sequences in partially N-deacetylated chitins (chitosans), Carbohydr Res., 217, pp. 19-27, (1991)
  • [6] El Gueddari N.E., Moerschbacher B.M., A bioactivity matrix for chitosans as elicitors of disease resistance reactions in wheat, Adv Chitin Sci., 7, pp. 56-59, (2004)
  • [7] Weinhold M.X., Sauvageau J.C.M.M., Kumirska J., Thoming J., Studies on acetylation patterns of different chitosan preparations, Carbohydr Polym, 78, pp. 678-684, (2009)
  • [8] Schatz C., Viton C., Delair T., Pichot C., Domard A., Typical physicochemical behaviors of chitosan in aqueous solution, Biomacromol, 4, pp. 641-648, (2003)
  • [9] Wattjes J., Sreekumar S., Niehues A., Mengoni T., Mendes A.C.L., Morris E.R., Et al., Biotechnology-derived chitosans with non-random patterns of acetylation differ from conventional chitosans in their properties and activities, ChemRxiv Prepr, (2021)
  • [10] Wattjes J., Niehues A., Cord-Landwehr S., Hossbach J., David L., Delair T., Et al., Enzymatic production and enzymatic-mass spectrometric fingerprinting analysis of chitosan polymers with different nonrandom patterns of acetylation, J Am Chem Soc, 141, pp. 3137-3145, (2019)