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Characterization of the functional roles of amino acid residues in acceptor binding subsite +1 in the active site of the glucansucrase GTF180 enzyme of Lactobacillus reuteri 180

机译:表征罗伊氏乳杆菌180葡聚糖酶GTF180酶活性位点中受体结合亚位点+1中氨基酸残基的功能作用

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摘要

α-Glucans produced by glucansucrase enymes hold strong potential for industrial applications. The exact determinants of the linkage specificity of glucansucrase enzymes have remained largely unknown, even with the recent elucidation of glucansucrase crystal structures. Guided by the crystal structure from glucansucrase GTF180-ΔN of Lactobacillus reuteri 180 in complex with the acceptor substrate maltose, we identified several residues (D1028 and N1029 from domain A, as well as L938, A978 and L981 from domain B) near subsite +1 that may be critical for linkage specificity determination and investigated these by random site-directed mutagenesis. First, mutants of A978 (to L, P, F or Y) and D1028 (to Y or W) with larger side chains showed reduced degrees of branching, likely due to the steric hindrance by these bulky residues. Second, L938 mutants (except L938F) and D1028 mutants showed altered linkage specificity, mostly with increased (α1→6) linkage synthesis. Third, mutation of L981 and N1029 significantly affected the transglycosylation reaction, indicating their essential roles in acceptor substrate binding. In conclusion, glucansucrase product specificity is determined by an interplay of domain A and B residues surrounding the acceptor substrate binding groove. Residues surrounding the +1 subsite thus are critical for activity and specificity of the GTF180 enzyme, and play different roles in the enzyme function. This study provides novel insights into the structure-function relationships of glucansucrase enzymes and clearly shows the potential of enzyme engineering to produce tailor-made α-glucans.
机译:由葡糖核酸酶酶产生的α-葡聚糖具有工业应用的强大潜力。即使最近对葡糖苷酶的晶体结构进行了阐明,葡聚糖酶的键合特异性的确切决定因素仍然很大程度上未知。根据来自罗伊氏乳杆菌180的葡糖核酸酶GTF180-ΔN的晶体结构与受体底物麦芽糖的复合结构,我们确定了亚残基+1附近的几个残基(来自域A的D1028和N1029,以及来自域B的L938,A978和L981)这对于确定连接特异性可能至关重要,并通过随机定点诱变研究了这些问题。首先,具有较大侧链的A978(至L,P,F或Y)和D1028(至Y或W)的突变体显示分支度降低,这可能是由于这些庞大残基的位阻所致。其次,L938突变体(L938F除外)和D1028突变体显示出改变的连锁特异性,主要是随着(α1→6)连锁合成的增加。第三,L981和N1029的突变显着影响转糖基化反应,表明它们在受体底物结合中的重要作用。总之,葡糖核酸酶产物的特异性取决于受体底物结合槽周围的域A和B残基的相互作用。因此,围绕+1子位点的残基对于GTF180酶的活性和特异性至关重要,并在酶功能中发挥不同的作用。这项研究提供了对葡聚糖蔗糖酶的结构-功能关系的新颖见解,并清楚地表明了酶工程技术生产定制α-葡聚糖的潜力。

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