Brzezicka Katarzyna, Echeverria Begoña, Serna Sonia, van Diepen Angela, Hokke Cornelis H, Reichardt Niels-Christian
†Glycotechnology Laboratory, CIC biomaGUNE, Paseo Miramón 182, 20009 San Sebastian, Spain.
‡Parasite Glycobiology Group, Department of Parasitology, Leiden University Medical Center, P.O. Box 9600, 2300 RC Leiden, The Netherlands.
ACS Chem Biol. 2015 May 15;10(5):1290-302. doi: 10.1021/cb501023u. Epub 2015 Feb 23.
The synthesis of a collection of 33 xylosylated and core-fucosylated N-glycans found only in nonmammalian organisms such as plants and parasitic helminths has been achieved by employing a highly convergent chemo-enzymatic approach. The influence of these core modifications on the interaction with plant lectins, with the human lectin DC-SIGN (Dendritic Cell-Specific Intercellular adhesion molecule-3-Grabbing Nonintegrin), and with serum antibodies from schistosome-infected individuals was studied. Core xylosylation markedly reduced or completely abolished binding to several mannose-binding plant lectins and to DC-SIGN, a C-type lectin receptor present on antigen presenting cells. Employing the synthetic collection of core-fucosylated and core-xylosylated N-glycans in the context of a larger glycan array including structures lacking these core modifications, we were able to dissect core xylose and core fucose specific antiglycan antibody responses in S. mansoni infection sera, and we observed clear and immunologically relevant differences between children and adult groups infected with this parasite. The work presented here suggests that, quite similar to bisecting N-acetylglucosamine, core xylose distorts the conformation of the unsubstituted glycan, with important implications for the immunogenicity and protein binding properties of complex N-glycans.
通过采用高度汇聚的化学酶法,已实现了仅在植物和寄生蠕虫等非哺乳动物生物体中发现的33种木糖基化和核心岩藻糖基化N-聚糖的合成。研究了这些核心修饰对与植物凝集素、人凝集素DC-SIGN(树突状细胞特异性细胞间粘附分子-3-结合非整合素)以及来自血吸虫感染个体的血清抗体相互作用的影响。核心木糖基化显著降低或完全消除了与几种甘露糖结合植物凝集素以及与抗原呈递细胞上存在的C型凝集素受体DC-SIGN的结合。在包含缺乏这些核心修饰结构的更大聚糖阵列的背景下,利用核心岩藻糖基化和核心木糖基化N-聚糖的合成集合,我们能够剖析曼氏血吸虫感染血清中核心木糖和核心岩藻糖特异性抗聚糖抗体反应,并且我们观察到感染这种寄生虫的儿童和成人组之间存在明显且与免疫相关的差异。此处展示的工作表明,与平分N-乙酰葡糖胺非常相似,核心木糖会扭曲未取代聚糖的构象,这对复杂N-聚糖的免疫原性和蛋白质结合特性具有重要意义。