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来自成熟番茄果实的LeMAN4内切β-甘露聚糖酶可作为甘露聚糖转糖基酶或水解酶。

LeMAN4 endo-beta-mannanase from ripe tomato fruit can act as a mannan transglycosylase or hydrolase.

作者信息

Schröder Roswitha, Wegrzyn Teresa F, Sharma Neelam N, Atkinson Ross G

机构信息

Mt. Albert Research Centre, The Horticulture and Food Research Institute of New Zealand, Private Bag 92 169, Auckland, New Zealand.

出版信息

Planta. 2006 Oct;224(5):1091-102. doi: 10.1007/s00425-006-0286-0. Epub 2006 Apr 29.

Abstract

Mannan transglycosylases are cell wall enzymes able to transfer part of the mannan polysaccharide backbone to mannan-derived oligosaccharides (Schröder et al. in Planta 219:590-600, 2004). Mannan transglycosylase activity was purified to near homogeneity from ripe tomato fruit. N-terminal sequencing showed that the dominant band seen on SDS-PAGE was identical to LeMAN4a, a hydrolytic endo-beta-mannanase found in ripe tomato fruit (Bewley et al. in J Exp Bot 51:529-538, 2000). Recombinant LeMAN4a protein expressed in Escherichia coli exhibited both mannan hydrolase and mannan transglycosylase activity. Western analysis of ripe tomato fruit tissue using an antibody raised against tomato seed endo-beta-mannanase revealed four isoforms present after 2D-gel electrophoresis in the pH range 6-11. On separation by preparative liquid isoelectric focussing, these native isoforms exhibited different preferences for transglycosylation and hydrolysis. These results demonstrate that endo-beta-mannanase has two activities: it can either hydrolyse mannan polysaccharides, or in the presence of mannan-derived oligosaccharides, carry out a transglycosylation reaction. We therefore propose that endo-beta-mannanase should be renamed mannan transglycosylase/hydrolase, in accordance with the nomenclature established for xyloglucan endotransglucosylase/hydrolase. The role of endo-acting mannanases in modifying the structure of plant cell walls during cell expansion, seed germination and fruit ripening may need to be reinterpreted in light of their potential action as transglycosylating or hydrolysing enzymes.

摘要

甘露聚糖转糖基酶是能够将部分甘露聚糖多糖主链转移至甘露聚糖衍生的寡糖的细胞壁酶(施罗德等人,《植物》,2004年,第219卷,第590 - 600页)。从成熟番茄果实中纯化出了近乎均一的甘露聚糖转糖基酶活性。N端测序表明,SDS - PAGE上可见的主带与LeMAN4a相同,LeMAN4a是一种在成熟番茄果实中发现的水解性内切β - 甘露聚糖酶( Bewley等人,《实验植物学杂志》,2000年,第51卷,第529 - 538页)。在大肠杆菌中表达的重组LeMAN4a蛋白同时具有甘露聚糖水解酶和甘露聚糖转糖基酶活性。使用针对番茄种子内切β - 甘露聚糖酶产生的抗体对成熟番茄果实组织进行的蛋白质免疫印迹分析显示,在pH范围为6 - 11的二维凝胶电泳后存在四种同工型。通过制备性液相等电聚焦分离后,这些天然同工型对转糖基化和水解表现出不同的偏好。这些结果表明内切β - 甘露聚糖酶具有两种活性:它既可以水解甘露聚糖多糖,也可以在甘露聚糖衍生的寡糖存在的情况下进行转糖基化反应。因此,我们建议根据为木葡聚糖内转糖基酶/水解酶建立的命名法,将内切β - 甘露聚糖酶重新命名为甘露聚糖转糖基酶/水解酶。鉴于其作为转糖基化或水解酶的潜在作用可能需要重新解释内切型甘露聚糖酶在细胞扩张、种子萌发和果实成熟过程中对植物细胞壁结构进行修饰的作用。

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