首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >The second member of the bacterial UDP-N-acetyl-D-glucosamine:heparosan alpha-1, 4-N-acetyl-D-glucosaminyltransferase superfamily: GaKfiA from Gallibacterium anatis
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The second member of the bacterial UDP-N-acetyl-D-glucosamine:heparosan alpha-1, 4-N-acetyl-D-glucosaminyltransferase superfamily: GaKfiA from Gallibacterium anatis

机译:细菌UDP-N-乙酰基-D-葡糖胺的第二个成员:肝素α-1,4- N-乙酰-D-葡糖胺基转移酶超细种类:来自壁碱性的Gakfia

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摘要

Bacterial UDP-N-acetyl-D-glucosamine:heparosan alpha-1, 4-N-acetyl-D-glucosaminyltransferases (KfiAs) are in high demand for the development of animal-free heparin (HP) production. Until now, EcKfiA from Escherichia coli O10:K5:H4 was the sole identified member of this family. The lack of known members has limited research into molecular structure and catalytic mechanism of the KfiA superfamily, and restricted its application in enzymatic glycan synthesis. Herein, we report the identification and characterization of Gallibacterium anatis GaKfiA, doubling the number of known members of the KfiA family. GaKfiA is a monofunctional enzyme that transfers N-acetyl-D-glucosamine (GlcNAc) residues from their nucleotide forms to the nonreducing ends of saccharide chains structurally equivalent to the backbone of HP. The catalytic efficiency of GaKfiA is lower than that of EcKfiA. However, a single mutation of GaKfiA, N56D, resulted in a drastic increase in k(cat)/K-m compared with wild-type GaKfiA. These data once again indicate the key role of a complete DXD motif for the catalytic efficiency of glycosyltransferases. This study deepens understanding of the mechanism of KfiA, and will assist in research into animal-free HP production. (C) 2020 Published by Elsevier B.V.
机译:细菌UDP-N-乙酰基-D-葡糖胺:肝素α-1,4- N-乙酰-D-葡糖胺氨基苯胺(KFIAs)对无动物肝素(HP)生产的开发需求很大。到目前为止,来自大肠杆菌o10的Eckfia:K5:H4是这个家庭的唯一确定的成员。缺乏已知成员对KFIA超家族的分子结构和催化机制有限,并限制其在酶聚糖合成中的应用。在此,我们报告了Anatis Gakfia掩抗的识别和表征,使KFIA家族的已知成员数倍加倍。 Gakfia是一种单官能酶,其将N-乙酰基-D-葡糖胺(GlcNAC)残基从其核苷酸形式转移到结构上相当于HP的主链的糖链的未给糖链的未给糖末端。 Gakfia的催化效率低于ECKFIA的催化效率。然而,GAKFIA,N56D的单一突变导致K(猫)/ k-m的急剧增加,与野生型的野生型GAKFIA相比。这些数据再次指示完整的DXD基序对于糖基转移酶的催化效率的关键作用。本研究深化了对克菲亚机制的认识,并有助于研究无动物的惠普生产。 (c)2020由elsevier b.v发布。

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