Ochiai Hirofumi, Huang Wei, Wang Lai-Xi
Institute of Human Virology, Department of Biochemistry & Molecular Biology, University of Maryland School of Medicine, Baltimore, Maryland 21201, USA.
J Am Chem Soc. 2008 Oct 15;130(41):13790-803. doi: 10.1021/ja805044x. Epub 2008 Sep 20.
An efficient chemoenzymatic method for the construction of homogeneous N-glycoproteins was described that explores the transglycosylation activity of the endo-beta-N-acetylglucosaminidase from Arthrobacter protophormiae (Endo-A) with synthetic sugar oxazolines as the donor substrates. First, an array of large oligosaccharide oxazolines were synthesized and evaluated as substrates for the Endo-A-catalyzed transglycosylation by use of ribonuclease B as a model system. The experimental results showed that Endo-A could tolerate modifications at the outer mannose residues of the Man3GlcNAc-oxazoline core, thus allowing introduction of large oligosaccharide ligands into a protein and meanwhile preserving the natural, core N-pentasaccharide (Man3GlcNAc2) structure in the resulting glycoprotein upon transglycosylation. In addition to ligands for galectins and mannose-binding lectins, azido functionality could be readily introduced at the N-pentasaccharide (Man3GlcNAc2) core by use of azido-containing Man3GlcNAc oxazoline as the donor substrate. The introduction of azido functionality permits further site-specific modifications of the resulting glycoproteins, as demonstrated by the successful attachment of two copies of alphaGal epitopes to ribonuclease B. This study reveals a broad substrate specificity of Endo-A for transglycosylation, and the chemoenzymatic method described here points to a new avenue for quick access to various homogeneous N-glycoproteins for structure-activity relationship studies and for biomedical applications.
描述了一种构建均一N-糖蛋白的高效化学酶法,该方法利用来自原光节杆菌的内切β-N-乙酰氨基葡萄糖苷酶(Endo-A)的转糖基化活性,以合成糖恶唑啉作为供体底物。首先,合成了一系列大的寡糖恶唑啉,并以核糖核酸酶B为模型系统,评估其作为Endo-A催化转糖基化反应底物的性能。实验结果表明,Endo-A能够耐受Man3GlcNAc-恶唑啉核心外甘露糖残基的修饰,从而允许将大的寡糖配体引入蛋白质中,同时在转糖基化反应后所得糖蛋白中保留天然的核心N-五糖(Man3GlcNAc2)结构。除了半乳糖凝集素和甘露糖结合凝集素的配体外,通过使用含叠氮基的Man3GlcNAc恶唑啉作为供体底物,可以很容易地在N-五糖(Man3GlcNAc2)核心处引入叠氮基官能团。叠氮基官能团的引入允许对所得糖蛋白进行进一步的位点特异性修饰,如将两个拷贝的αGal表位成功连接到核糖核酸酶B所示。本研究揭示了Endo-A在转糖基化反应中具有广泛的底物特异性,这里描述的化学酶法为快速获得各种均一N-糖蛋白以进行构效关系研究和生物医学应用指明了一条新途径。