Expression and biochemical characterization and substrate specificity of the fucoidanase fromFormosa algae

褐藻 生物化学 褐藻糖胶 糖苷键 氨基酸 肽序列 化学 生物 基因 藻类 植物 多糖
作者
Artem S. Silchenko,Nadezhda E. Ustyuzhanina,Mikhail I. Kusaykin,Vadim B. Krylov,Alexander S. Shashkov,Andrey S. Dmitrenok,Roza V. Usoltseva,Anastasiya O. Zueva,Nikolay E. Nifantiev,T. N. Zvyagintseva
出处
期刊:Glycobiology [Oxford University Press]
被引量:47
标识
DOI:10.1093/glycob/cww138
摘要

A gene that encodes fucoidanase ffa2 in the marine bacterium Formosa algae strain KMM 3553T was cloned, and the protein (FFA2) was produced in Escherichia coli. Recombinant fucoidanase FFA2 was purified, and the biochemical properties of this enzyme were studied. The amino acid sequence of FFA2 showed 57% identity with known fucoidanase FcnA from Mariniflexile fucanivorans. The mass of the gene product FFA2 is 101.2 kDa (918 amino acid residues). Sequence analysis has revealed that fucoidanase FFA2 belongs to the GH107 (CAZy) family. Detailed substrate specificity was studied by using fucoidans from brown seaweeds as well as synthetic fucooligosaccharide with distinct structures. Fucoidanase FFA2 catalyzes the cleavage of (1→4)-α-glycosidic bonds in the fucoidan from Fucus evanescens within a structural fragment (→3)-α-l-Fucp2S-(1→4)-α-l-Fucp2S-(1→)n but not in a fragment (→3)-α-l-Fucp2S,4S-(1→4)-α-l-Fucp2S-(1→)n. Using synthetic di-, tetra- and octasaccharides built up of the alternative (1→4)- and (1→3)-linked α-l-Fucp2S units, the difference in substrate specificity and in the rate of enzymatic selectivity was investigated. Nonsulfated and persulfated synthetic oligosaccharides were not transformed by the enzyme. Therefore, FFA2 was specified as poly[(1→4)-α-l-fucoside-2-sulfate] glycanohydrolase. This enzyme could be used for the modification of natural fucoidans to obtain more regular and easier characterized derivatives useful for research and practical applications.

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