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糖基水解酶家族GH78和GH106的微生物α-L-鼠李糖苷酶对α-L-鼠李糖基和α-L-甘露糖基连接具有广泛的底物特异性。

Microbial α-L-Rhamnosidases of Glycosyl Hydrolase Families GH78 and GH106 Have Broad Substrate Specificities toward α-L-Rhamnosyl- and α-L-Mannosyl-Linkages.

作者信息

Tautau Feunai Agape Papalii, Izumi Minoru, Matsunaga Emiko, Higuchi Yujiro, Takegawa Kaoru

机构信息

1 Department of Bioscience and Biotechnology, Faculty of Agriculture, Kyushu University.

2 Graduate School of Environmental and Life Science, Okayama University.

出版信息

J Appl Glycosci (1999). 2020 Sep 3;67(3):87-93. doi: 10.5458/jag.jag.JAG-2020_0005. eCollection 2020.

Abstract

α-L-Rhamnosidases (α-L-Rha-ases, EC 3.2.1.40) are glycosyl hydrolases (GHs) that hydrolyze a terminal α-linked L-rhamnose residue from a wide spectrum of substrates such as heteropolysaccharides, glycosylated proteins, and natural flavonoids. As a result, they are considered catalysts of interest for various biotechnological applications. α-L-rhamnose (6-deoxy-L-mannose) is structurally similar to the rare sugar α-L-mannose. Here we have examined whether microbial α-L-Rha-ases possess α-L-mannosidase activity by synthesizing the substrate 4-nitrophenyl α-L-mannopyranoside. Four α-L-Rha-ases from GH78 and GH106 families were expressed and purified from cells. All four enzymes exhibited both α-L-rhamnosyl-hydrolyzing activity and weak α-L-mannosyl-hydrolyzing activity. SpRhaM, a GH106 family α-L-Rha-ase from FP2001, was found to have relatively higher α-L-mannosidase activity as compared with three GH78 α-L-Rha-ases. The α-L-mannosidase activity of SpRhaM showed pH dependence, with highest activity observed at pH 7.0. In summary, we have shown that α-L-Rha-ases also have α-L-mannosidase activity. Our findings will be useful in the identification and structural determination of α-L-mannose-containing polysaccharides from natural sources for use in the pharmaceutical and food industries.

摘要

α-L-鼠李糖苷酶(α-L-Rha-ases,EC 3.2.1.40)是一类糖基水解酶(GHs),可从多种底物(如杂多糖、糖基化蛋白和天然黄酮类化合物)中水解出末端α-连接的L-鼠李糖残基。因此,它们被认为是各种生物技术应用中具有重要意义的催化剂。α-L-鼠李糖(6-脱氧-L-甘露糖)在结构上与稀有糖α-L-甘露糖相似。在此,我们通过合成底物4-硝基苯基α-L-甘露糖苷,研究了微生物α-L-Rha-ases是否具有α-L-甘露糖苷酶活性。从细胞中表达并纯化了来自GH78和GH106家族的四种α-L-Rha-ases。所有这四种酶都表现出α-L-鼠李糖基水解活性和较弱的α-L-甘露糖基水解活性。发现来自FP2001的GH106家族α-L-Rha-ase SpRhaM与三种GH78 α-L-Rha-ases相比,具有相对较高的α-L-甘露糖苷酶活性。SpRhaM的α-L-甘露糖苷酶活性表现出pH依赖性,在pH 7.0时活性最高。总之,我们已经表明α-L-Rha-ases也具有α-L-甘露糖苷酶活性。我们的研究结果将有助于鉴定和确定天然来源的含α-L-甘露糖多糖的结构,以用于制药和食品工业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0302/8132073/d4c8a1a850c1/JAG-67-087-g01.jpg

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