Boraston Alisdair B, Sandercock Linda E, Warren R Anthony J, Kilburn Douglas G
The Protein Engineering Network of Centres of Excellence, PENCE Inc, Edmonton, Canada.
J Mol Microbiol Biotechnol. 2003;5(1):29-36. doi: 10.1159/000068721.
Carbohydrate-binding modules (CBMs; previously called cellulose-binding domains) make excellent fusion partners for the immobilization or purification of polypeptides. However, their use in eukaryotic hosts has been limited by glycosylation, which interferes with the ability of the CBM to bind to cellulose. We have engineered the C-terminal carbohydrate-binding module from Cellulomonas fimi xylanase 10A such that it lacks N-glycosylation sites. This variant, called CBM2aNgly-, was produced and secreted by the methylotrophic yeast Pichia pastoris and found to be O-glycosylated. The O-linked glycans were composed entirely of mannose in a ratio of 1 mol of mannose to 4 mol of protein. The overall distribution of mannose on the O-glycosylated CBM mutant ranged from 1 to 9 mannose residues with the oligosaccharide sizes ranging from Man(1) to Man(4). MALDI-TOF (all matrix-assisted-laser-desorption time of flight) mass spectrometry (MS) was used to map the O-glycosylation to three regions of the polypeptide, each region having a maximum of 4 mannose residues attached to each. Glycans chemically released from CBM2aNgly- and analyzed by fluorophore-assisted carbohydrate electrophoresis were found to contain alpha-1,2-, alpha-1,3-, and alpha-1,6-linkages. Significantly, the O-glycosylation did not influence binding, making CBM2aNgly- a suitable fusion partner for polypeptides produced in P. pastoris and other eukaryotic hosts.
碳水化合物结合模块(CBMs;以前称为纤维素结合结构域)是用于固定或纯化多肽的优秀融合伙伴。然而,它们在真核宿主中的应用受到糖基化的限制,糖基化会干扰CBM与纤维素结合的能力。我们对纤维单胞菌木聚糖酶10A的C端碳水化合物结合模块进行了改造,使其缺乏N-糖基化位点。这种变体称为CBM2aNgly-,由甲基营养酵母毕赤酵母产生并分泌,发现其发生了O-糖基化。O-连接聚糖完全由甘露糖组成,甘露糖与蛋白质的摩尔比为1:4。O-糖基化CBM突变体上甘露糖的总体分布范围为1至9个甘露糖残基,寡糖大小范围为Man(1)至Man(4)。使用基质辅助激光解吸飞行时间(MALDI-TOF)质谱(MS)将O-糖基化定位到多肽的三个区域,每个区域最多连接4个甘露糖残基。从CBM2aNgly-化学释放并通过荧光团辅助碳水化合物电泳分析的聚糖被发现含有α-1,2-、α-1,3-和α-1,6-连接。重要的是,O-糖基化不影响结合,使得CBM2aNgly-成为毕赤酵母和其他真核宿主中产生的多肽的合适融合伙伴。