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首页> 外文期刊>Glycoconjugate journal >Purification and characterization of β-xylosidase that is active for plant complex type N-glycans from tomato (Solanum lycopersicum): Removal of core α1-3 mannosyl residue is prerequisite for hydrolysis of β1-2 xylosyl residue
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Purification and characterization of β-xylosidase that is active for plant complex type N-glycans from tomato (Solanum lycopersicum): Removal of core α1-3 mannosyl residue is prerequisite for hydrolysis of β1-2 xylosyl residue

机译:对番茄(Solanum lycopersicum)植物复合物N型聚糖具有活性的β-木糖苷酶的纯化和表征:去除核心α1-3甘露糖基残基是水解β1-2木糖基残基的前提

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摘要

In this study, we purified and characterized the β-xylosidase involved in the turnover of plant complex type N-glycans to homogeneity from mature red tomatoes. Purified β-xylosidase (β-Xyl'ase Le-1) gave a single band with molecular masses of 67 kDa on SDS-PAGE under a reducing condition and 60 kDa on gelfiltration, indicating that β-Xyl'ase Le-1 has a monomeric structure in plant cells. The N-terminal amino acid could not be identified owing to a chemical modification. When pyridylaminated (PA-) N-glycans were used as substrates, β-Xyl'ase Le-1 showed optimum activity at about pH 5 at 40 C, suggesting that the enzyme functions in a rather acidic circumstance such as in the vacuole or cell wall. β-Xyl'ase Le-1 hydrolyzed the β1-2 xylosyl residue from Man_1Xyl_1GlcNAc_2-PA, Man_1Xyl_1Fuc_1GlcNAc_2-PA, and Man_ 2Xyl_1Fuc_1GlcNAc_2-PA, but not that from Man_3Xyl_1G_lcNAc_2-PA or Man 3Xyl1Fuc1GlcNAc2-PA, indicating that the α1-3 arm mannosyl residue exerts significant steric hindrance for the access of β-Xyl'ase Le-1 to the xylosyl residue, whereas the α1-3 fucosyl residue exerts little effect. These results suggest that the release of the β1-2 xylosyl residue by β-Xyl'ase Le-1 occurs at least after the removal the α-1,3-mannosyl residue in the core trimannosyl unit.
机译:在这项研究中,我们从成熟的红番茄中纯化和表征了涉及植物复合物N型聚糖转化为同质性的β-木糖苷酶。纯化的β-木糖苷酶(β-Xyl'aseLe-1)在还原条件下在SDS-PAGE上的分子量为67 kDa,在凝胶过滤时为60 kDa,显示一条单条带,表明β-Xyl'aseLe-1具有植物细胞中的单体结构。由于化学修饰,无法鉴定N末端氨基酸。当使用吡啶基叠氮化的(PA-)N-聚糖作为底物时,β-木糖酶Le-1在40°C约pH 5时显示最佳活性,这表明该酶在相当酸性的情况下(如在液泡或细胞中)起作用壁。 β-木糖酶Le-1水解了Man_1Xyl_1GlcNAc_2-PA,Man_1Xyl_1Fuc_1GlcNAc_2-PA和Man_2Xyl_1Fuc_1GlcNAc_2-PA的β1-2木糖基残基,但没有水解Man_3Xyl_1GuclcNAc_2-PA或Man 3Xyl1Fuc1G1的Man 3Xyl甘露糖基残基对β-木糖基化酶Le-1进入木糖基残基具有很大的空间位阻,而α1-3岩藻糖基残基的作用很小。这些结果表明,至少在除去核心三甘露糖基单元中的α-1,3-甘露糖基残基之后,β-木糖基化酶Le-1释放β1-2木糖基残基。

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