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首页> 外文期刊>Bioscience, Biotechnology, and Biochemistry >α-Mannosidase Involved in Turnover of Plant Complex Type N-Glycans in Tomato (Lycopersicum esculentum) Fruits
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α-Mannosidase Involved in Turnover of Plant Complex Type N-Glycans in Tomato (Lycopersicum esculentum) Fruits

机译:α-甘露糖苷酶参与番茄果实(Lycopersicum esculentum)植物复合型N-聚糖的转化

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摘要

In this study, we purified and characterized an α-mannosidase to homogeneity from mature red tomato fruits. Purified α-mannosidase (α-Man LE-1) gave two separate bands, of molecular masses of 70kDa (L-subunit) and 47kDa (S-subunit), on SDS-PAGE under non-reducing and reducing conditions. On the other hand, the molecular weight was estimated to be 230 kDa by gel filtration, indicating that α-Man LE-1 functions in a tetrameric structure in plant cells. The N-terminal sequence of the L-subunit and the S-subunit were determined to be L-Y-M-V-Y-M-T-K-Q-G- and X-X-L-E-Q/K-S-F-S-Y-Y respectively. When pyridyla-minated N-glycans were used as substrates, α-Man LE-1 showed optimum activity at about pH 6 and at 40 °C, and the activity was completely inhibited by both swainsonine and 1-deoxy-mannojirimycin. α-Man LE-1 hydrolyzed the α-mannosidic linkages from both high-mannose type and plant complex type N-glycan, but preferred a truncated plant complex type structure to high-mannose type N-glycans bearing α1-2 mannosyl residues.
机译:在这项研究中,我们从成熟的红色番茄果实中纯化并鉴定了α-甘露糖苷酶的同质性。纯化的α-甘露糖苷酶(α-ManLE-1)在非还原和还原条件下,在SDS-PAGE上产生两条分别为70kDa(L亚基)和47kDa(S亚基)的分子量的条带。另一方面,通过凝胶过滤估计分子量为230kDa,表明α-ManLE-1在植物细胞中以四聚体结构起作用。确定L-亚基和S-亚基的N端序列分别为L-Y-M-V-Y-M-T-K-Q-G-和X-X-L-E-Q / K-S-F-S-Y-Y。当使用吡啶嘧啶末端的N-聚糖作为底物时,α-ManLE-1在约pH 6和40°C下表现出最佳活性,而芥子碱和1-脱氧-甘露糖霉素均完全抑制了该活性。 α-ManLE-1水解了高甘露糖型和植物复合型N-聚糖的α-甘露糖苷键,但相对于带有α1-2甘露糖基残基的高甘露糖型N-聚糖,优选截短的植物复合型结构。

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