Department of Advanced Bioscience, Kinki University, 3327-204 Nakamachi, Nara 631-8505, Japan.
Glycobiology. 2013 Jan;23(1):81-90. doi: 10.1093/glycob/cws125. Epub 2012 Aug 29.
A tryptophan side chain was introduced into subsite +1 of family GH-18 (class V) chitinases from Nicotiana tabacum and Arabidopsis thaliana (NtChiV and AtChiC, respectively) by the mutation of a glycine residue to tryptophan (G74W-NtChiV and G75W-AtChiC). The specific activity toward glycol chitin of the two mutant enzymes was 70-71% of that of the wild type. Using chitin oligosaccharides, (GlcNAc)(n) (n = 4, 5 and 6), as the substrates, we found the transglycosylation reaction to be significantly enhanced in G74W-NtChiV and G75W-AtChiC when compared with the corresponding wild-type enzymes. The introduced tryptophan side chain might protect the oxazolinium ion intermediate from attack by a nucleophilic water molecule. The enhancement of transglycosylation activity was much more distinct in G75W-AtChiC than in G74W-NtChiV. Nuclear magnetic resonance titration experiments using the inactive double mutants, E115Q/G74W-NtChiV and E116Q/G75W-AtChiC revealed that the association constant of (GlcNAc)(5) was considerably larger for the latter. Amino acid substitutions at the acceptor binding site might have resulted in the larger association constant for G75W-AtChiC, giving rise to the higher transglycosylation activity of G75W-AtChiC.
色氨酸侧链通过突变甘氨酸残基为色氨酸被引入到来自烟草和拟南芥的 GH-18(V 类)家族几丁质酶的+1 亚位(NtChiV 和 AtChiC,分别)(G74W-NtChiV 和 G75W-AtChiC)。两种突变酶对乙二醇几丁质的比活性为野生型的 70-71%。使用几丁寡糖(GlcNAc)(n)(n=4、5 和 6)作为底物,我们发现与相应的野生型酶相比,G74W-NtChiV 和 G75W-AtChiC 的转糖苷反应明显增强。引入的色氨酸侧链可能保护恶唑啉鎓离子中间体免受亲核水分子的攻击。在 G75W-AtChiC 中,转糖苷活性的增强比在 G74W-NtChiV 中更为明显。使用无活性的双突变体 E115Q/G74W-NtChiV 和 E116Q/G75W-AtChiC 的核磁共振滴定实验表明,后者与(GlcNAc)(5)的结合常数要大得多。在受体结合位点的氨基酸取代可能导致 G75W-AtChiC 的较大结合常数,从而导致 G75W-AtChiC 具有较高的转糖苷活性。