Takahashi Hideyuki, Yoshida Chiharu, Takeda Takumi
1 Iwate Biotechnology Research Center.
J Appl Glycosci (1999). 2019 Feb 20;66(1):47-50. doi: 10.5458/jag.jag.JAG-2018_0007. eCollection 2019.
Glycoside hydrolases require carboxyl groups as catalysts for their activity. A retaining xylanase from E-86 belonging to glycoside hydrolase family 10 possesses Glu128 and Glu236 that respectively function as acid/base and nucleophile. We previously developed a unique mutant of the retaining xylanase, N127S/E128H, whose deglycosylation is triggered by azide. A crystallographic study reported that the transient formation of a Ser-His catalytic dyad in the reaction cycle possibly reduced the azidolysis reaction. In the present study, we engineered a catalytic dyad with enhanced stability by site-directed mutagenesis and crystallographic study of N127S/E128H. Comparison of the Michaelis complexes of N127S/E128H with pNP-X and with xylopentaose showed that Ser127 could form an alternative hydrogen bond with Thr82, which disrupts the formation of the Ser-His catalytic dyad. The introduction of T82A mutation in N127S/E128H produces an enhanced first-order rate constant (6 times that of N127S/E128H). We confirmed the presence of a stable Ser-His hydrogen bond in the Michaelis complex of the triple mutant, which forms the productive tautomer of His128 that acts as an acid catalyst. Because the glycosyl azide is applicable in the bioconjugation of glycans by using click chemistry, the enzyme-assisted production of the glycosyl azide may contribute to the field of glycobiology.
糖苷水解酶需要羧基作为其活性的催化剂。来自糖苷水解酶家族10的E-86的一种保留型木聚糖酶具有分别作为酸/碱和亲核试剂起作用的Glu128和Glu236。我们之前开发了一种保留型木聚糖酶的独特突变体N127S/E128H,其去糖基化由叠氮化物引发。一项晶体学研究报告称,反应循环中Ser-His催化二元体的瞬时形成可能降低了叠氮解反应。在本研究中,我们通过定点诱变和对N127S/E128H的晶体学研究,设计了一种具有增强稳定性的催化二元体。N127S/E128H与对硝基苯木糖苷(pNP-X)以及与木五糖的米氏复合物的比较表明,Ser127可与Thr82形成另一种氢键,这会破坏Ser-His催化二元体的形成。在N127S/E128H中引入T82A突变可产生增强的一级速率常数(是N127S/E128H的6倍)。我们证实了三重突变体的米氏复合物中存在稳定的Ser-His氢键,该氢键形成了作为酸催化剂的His128的活性互变异构体。由于糖基叠氮化物可通过点击化学应用于聚糖的生物共轭,糖基叠氮化物的酶促生产可能会对糖生物学领域做出贡献。