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用来自慢生根瘤菌的一种新型重组β-葡萄糖基转移酶(反式-β-葡萄糖苷酶)对线性(β1→3)连接的葡萄糖寡糖进行修饰。

Modification of linear (β1→3)-linked gluco-oligosaccharides with a novel recombinant β-glucosyltransferase (trans-β-glucosidase) enzyme from Bradyrhizobium diazoefficiens.

作者信息

Dobruchowska Justyna M, Jonsson Jon O, Fridjonsson Olafur H, Aevarsson Arnthor, Kristjansson Jakob K, Altenbuchner Josef, Watzlawick Hildegard, Gerwig Gerrit J, Dijkhuizen Lubbert, Kamerling Johannis P, Hreggvidsson Gudmundur O

机构信息

Microbial Physiology, Groningen Biomolecular Sciences and Biotechnology Institute (GBB), University of Groningen, Nijenborgh 7, 9747 AG Groningen, The Netherlands.

Matís, Vínlandsleid 12, 113 Reykjavík, Iceland.

出版信息

Glycobiology. 2016 Nov;26(11):1157-1170. doi: 10.1093/glycob/cww074. Epub 2016 Aug 22.

Abstract

Recently, we have shown that glycoside hydrolases enzymes of family GH17 from proteobacteria (genera Pseudomonas, Azotobacter) catalyze elongation transfer reactions with laminari-oligosaccharides generating (β1→3) linkages preferably and to a lesser extent (β1→6) or (β1→4) linkages. In the present study, the cloning and characterization of the gene encoding the structurally very similar GH17 domain of the NdvB enzyme from Bradyrhizobium diazoefficiens, designated Glt20, as well as its catalytic properties are described. The Glt20 enzyme was strikingly different from the previously investigated bacterial GH17 enzymes, both regarding substrate specificity and product formation. The Azotobacter and Pseudomonas enzymes cleaved the donor laminari-oligosaccharide substrates three or four moieties from the non-reducing end, generating linear oligosaccharides. In contrast, the Glt20 enzyme cleaved donor laminari-oligosaccharide substrates two glucose moieties from the reducing end, releasing laminaribiose and transferring the remainder to laminari-oligosaccharide acceptor substrates creating only (β1→3)(β1→6) branching points. This enables Glt20 to transfer larger oligosaccharide chains than the other type of bacterial enzymes previously described, and helps explain the biologically significant formation of cyclic β-glucans in B. diazoefficiens.

摘要

最近,我们发现来自变形菌门(假单胞菌属、固氮菌属)的GH17家族糖苷水解酶能催化与海带寡糖的延伸转移反应,优先生成(β1→3)键,较少生成(β1→6)或(β1→4)键。在本研究中,描述了慢生根瘤菌中编码与NdvB酶结构非常相似的GH17结构域的基因(命名为Glt20)的克隆与表征及其催化特性。Glt20酶在底物特异性和产物形成方面与先前研究的细菌GH17酶显著不同。固氮菌和假单胞菌的酶从非还原端切割供体海带寡糖底物的三个或四个部分,生成线性寡糖。相比之下,Glt20酶从还原端切割供体海带寡糖底物的两个葡萄糖部分,释放出层二糖,并将其余部分转移到海带寡糖受体底物上,仅产生(β1→3)(β1→6)分支点。这使得Glt20能够转移比先前描述的其他类型细菌酶更大的寡糖链,并有助于解释慢生根瘤菌中具有生物学意义的环状β-葡聚糖的形成。

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