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Characterization of the Paenibacillus beijingensis DSM 24997 GtfD and its glucan polymer products representing a new glycoside hydrolase 70 subfamily of 46-α-glucanotransferase enzymes

机译:北京芽孢杆菌DSM 24997 GtfD及其葡聚糖聚合物产物的表征该产物代表46-α-葡糖基转移酶的新糖苷水解酶70亚家族

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摘要

Previously we have reported that the Gram-negative bacterium Azotobacter chroococcum NCIMB 8003 uses the 4,6-α-glucanotransferase GtfD to convert maltodextrins and starch into a reuteran-like polymer consisting of (α1→4) glucan chains connected by alternating (α1→4)/(α1→6) linkages and (α1→4,6) branching points. This enzyme constituted the single evidence for this reaction and product specificity in the GH70 family, mostly containing glucansucrases encoded by lactic acid bacteria (). In this work, 4 additional GtfD-like proteins were identified in taxonomically diverse plant-associated bacteria forming a new GH70 subfamily with intermediate characteristics between the evolutionary related GH13 and GH70 families. The GtfD enzyme encoded by Paenibacillus beijingensis DSM 24997 was characterized providing the first example of a reuteran-like polymer synthesizing 4,6-α-glucanotransferase in a Gram-positive bacterium. Whereas the A. chroococcum GtfD activity on amylose resulted in the synthesis of a high molecular polymer, in addition to maltose and other small oligosaccharides, two reuteran-like polymer distributions are produced by P. beijingensis GtfD: a high-molecular mass polymer and a low-molecular mass polymer with an average Mw of 27 MDa and 19 kDa, respectively. Compared to the A. chroooccum GtfD product, both P. beijingensis GtfD polymers contain longer linear (α1→4) sequences in their structure reflecting a preference for transfer of even longer glucan chains by this enzyme. Overall, this study provides new insights into the evolutionary history of GH70 enzymes, and enlarges the diversity of natural enzymes that can be applied for modification of the starch present in food into less and/or more slowly digestible carbohydrate structures.
机译:先前我们曾报道过革兰氏阴性细菌嗜氮菌NCIMB 8003使用4,6-α-葡聚糖转移酶GtfD将麦芽糖糊精和淀粉转化为由(α1→4)葡聚糖链组成的类Reuteran样聚合物,这些链通过交替(α1→ 4)/(α1→6)链接和(α1→4,6)分支点。该酶构成GH70家族中该反应和产物特异性的唯一证据,主要含有乳酸菌编码的葡聚糖蔗糖。在这项工作中,在分类学上不同的植物相关细菌中鉴定了4个其他GtfD样蛋白,形成了一个新的GH70亚家族,在进化相关的GH13和GH70家族之间具有中间特征。由北京芽孢杆菌DSM 24997编码的GtfD酶的特征提供了在革兰氏阳性细菌中合成4,6-α-葡聚糖转移酶的类reuteran样聚合物的第一个实例。尽管嗜麦芽孢杆菌GtfD对直链淀粉的活性导致了高分子聚合物的合成,除麦芽糖和其他小寡糖外,北京假单胞菌GtfD还产生了两种类Reuteran样的聚合物分布:一种高分子聚合物和一种低分子量聚合物,平均Mw分别为27 MDa和19 kDa。与A. chroooccum GtfD产品相比,两种北京假单胞菌GtfD聚合物在其结构中均包含更长的线性(α1→4)序列,这反映出该酶更愿意转移更长的葡聚糖链。总体而言,这项研究为GH70酶的进化历史提供了新见识,并扩大了可用于将食品中存在的淀粉修饰为更少和/或更易消化的碳水化合物结构的天然酶的多样性。

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