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番茄α1,3/4-岩藻糖苷酶(α-Fuc'ase Sl-2)的分子特征,属于糖苷水解酶家族 29,作用于植物 N-聚糖核心α1,3-岩藻糖基残基。

Molecular characterization of second tomato α1,3/4-fucosidase (α-Fuc'ase Sl-2), a member of glycosyl hydrolase family 29 active toward the core α1,3-fucosyl residue in plant N-glycans.

机构信息

Department of Biofunctional Chemistry, Graduate School of Environmental and Life Science, Okayama University, Okayama 700-8530, Japan.

Institute of Food and Radiation Biology, Atomic Energy Research Establishment, Bangladesh Atomic Energy Commission, Ganakbari, Savar, Dhaka 1340, Bangladesh.

出版信息

J Biochem. 2018 Jul 1;164(1):53-63. doi: 10.1093/jb/mvy029.

Abstract

In a previous study, we molecular-characterized a tomato (Solanum lycopersicum) α1, 3/4-fucosidase (α-Fuc'ase Sl-1) encoded in a tomato gene (Solyc03g006980), indicating that α-Fuc'ase Sl-1 is involved in the turnover of Lea epitope-containing N-glycans. In this study, we have characterized another tomato gene (Solyc11g069010) encoding α1, 3/4-fucosidase (α-Fuc'ase Sl-2), which is also active toward the complex type N-glycans containing Lea epitope(s). The baculovirus-insect cell expression system was used to express that α-Fuc'ase Sl-2 with anti-FLAG tag, and the expression product (rFuc'ase Sl-2), was found as a 65 kDa protein using SDS-PAGE and has an optimum pH of around 5.0. Similarly to rFuc'ase Sl-1, rFuc'ase Sl-2 hydrolyzed the non-reducing terminal α1, 3-fucose residue on LNFP III and α1, 4-fucose residues of Lea epitopes on plant complex type N-glycans, but not the core α1, 3-fucose residue on Manβ1-4GlcNAcβ1-4(Fucα1-3)GlcNAc or Fucα1-3GlcNAc. However, we found that both α-Fuc'ases Sl-1 and Sl-2 were specifically active toward α1, 3-fucose residue on GlcNAcβ1-4(Fucα1-3)GlcNAc, indicating that the non-substituted β-GlcNAc linked to the proximal GlcNAc residue of the core tri-saccharide moiety of plant specific N-glycans must be a pre-requisite for α-Fuc'ase activity. A 3 D modelled structure of the catalytic sites of α-Fuc'ase Sl-2 suggested that Asp192 and Glu236 may be important for binding to the α1, 3/4 fucose residue.

摘要

在之前的一项研究中,我们对番茄(Solanum lycopersicum)基因(Solyc03g006980)编码的 α1,3/4-岩藻糖基转移酶(α-Fuc'ase Sl-1)进行了分子特征分析,表明 α-Fuc'ase Sl-1 参与了含有 Lea 表位的 N-糖链的周转。在本研究中,我们对另一个番茄基因(Solyc11g069010)进行了特征分析,该基因编码的 α1,3/4-岩藻糖基转移酶(α-Fuc'ase Sl-2)对含有 Lea 表位的复杂型 N-糖链也具有活性。我们使用杆状病毒-昆虫细胞表达系统表达带有抗-FLAG 标签的 α-Fuc'ase Sl-2,通过 SDS-PAGE 发现表达产物(rFuc'ase Sl-2)为 65 kDa 的蛋白,最适 pH 值约为 5.0。与 rFuc'ase Sl-1 类似,rFuc'ase Sl-2 水解 LNFP III 的非还原末端的α1,3-岩藻糖和植物复杂型 N-糖链中 Lea 表位的α1,4-岩藻糖,但不能水解核心 Manβ1-4GlcNAcβ1-4(Fucα1-3)GlcNAc 上的核心α1,3-岩藻糖或 Fucα1-3GlcNAc。然而,我们发现两种α-Fuc'ase Sl-1 和 Sl-2 都对 GlcNAcβ1-4(Fucα1-3)GlcNAc 上的α1,3-岩藻糖具有特异性活性,表明植物特异性 N-糖链核心三糖部分的近端 GlcNAc 残基上连接的未取代的β-GlcNAc 是α-Fuc'ase 活性的必要前提。α-Fuc'ase Sl-2 催化部位的三维模型结构表明,Asp192 和 Glu236 可能对与α1,3/4-岩藻糖残基的结合很重要。

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