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高效液相色谱-质谱联用揭示的鲨鱼弧菌几丁质酶A野生型和活性位点突变体的酶学性质

Enzymatic properties of wild-type and active site mutants of chitinase A from Vibrio carchariae, as revealed by HPLC-MS.

作者信息

Suginta Wipa, Vongsuwan Archara, Songsiriritthigul Chomphunuch, Svasti Jisnuson, Prinz Heino

机构信息

School of Biochemistry, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima, Thailand.

出版信息

FEBS J. 2005 Jul;272(13):3376-86. doi: 10.1111/j.1742-4658.2005.04753.x.

Abstract

The enzymatic properties of chitinase A from Vibrio carchariae have been studied in detail by using combined HPLC and electrospray MS. This approach allowed the separation of alpha and beta anomers and the simultaneous monitoring of chitooligosaccharide products down to picomole levels. Chitinase A primarily generated beta-anomeric products, indicating that it catalyzed hydrolysis through a retaining mechanism. The enzyme exhibited endo characteristics, requiring a minimum of two glycosidic bonds for hydrolysis. The kinetics of hydrolysis revealed that chitinase A had greater affinity towards higher Mr chitooligomers, in the order of (GlcNAc)6 > (GlcNAc)4 > (GlcNAc)3, and showed no activity towards (GlcNAc)2 and pNP-GlcNAc. This suggested that the binding site of chitinase A was probably composed of an array of six binding subsites. Point mutations were introduced into two active site residues - Glu315 and Asp392 - by site-directed mutagenesis. The D392N mutant retained significant chitinase activity in the gel activity assay and showed approximately 20% residual activity towards chitooligosaccharides and colloidal chitin in HPLC-MS measurements. The complete loss of substrate utilization with the E315M and E315Q mutants suggested that Glu315 is an essential residue in enzyme catalysis. The recombinant wild-type enzyme acted on chitooligosaccharides, releasing higher quantities of small oligomers, while the D392N mutant favored the formation of transient intermediates. Under standard hydrolytic conditions, all chitinases also exhibited transglycosylation activity towards chitooligosaccharides and pNP-glycosides, yielding picomole quantities of synthesized chitooligomers. The D392N mutant displayed strikingly greater efficiency in oligosaccharide synthesis than the wild-type enzyme.

摘要

利用高效液相色谱(HPLC)和电喷雾质谱(MS)联用技术,对噬人弧菌几丁质酶A的酶学性质进行了详细研究。这种方法能够分离α和β异头物,并同时监测低至皮摩尔水平的几丁寡糖产物。几丁质酶A主要生成β异头物产物,表明其通过保留机制催化水解反应。该酶具有内切酶特性,水解反应至少需要两个糖苷键。水解动力学表明,几丁质酶A对较高分子量的几丁寡糖具有更高的亲和力,顺序为(GlcNAc)6 > (GlcNAc)4 > (GlcNAc)3,对(GlcNAc)2和对硝基苯基 - N - 乙酰葡糖胺(pNP - GlcNAc)无活性。这表明几丁质酶A的结合位点可能由六个结合亚位点组成。通过定点诱变将两个活性位点残基——Glu315和Asp392进行点突变。D392N突变体在凝胶活性测定中保留了显著的几丁质酶活性,在HPLC - MS测量中对几丁寡糖和胶体几丁质显示出约20%的残余活性。E315M和E315Q突变体完全丧失底物利用能力,表明Glu315是酶催化中的必需残基。重组野生型酶作用于几丁寡糖,释放出大量小分子寡聚物,而D392N突变体则有利于瞬时中间体的形成。在标准水解条件下,所有几丁质酶对几丁寡糖和对硝基苯基糖苷也表现出转糖基化活性,产生皮摩尔量的合成几丁寡糖。D392N突变体在寡糖合成方面的效率明显高于野生型酶。

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