Plzák Jan, Holíková Zuzana, Dvoránková Barbora, Smetana Karel, Betka Jan, Hercogová Jana, Saeland Sem, Bovin Nicolai V, Gabius Hans-Joachim
Institute of Anatomy, Department of Otorhinolaryngology, Head and Neck Surgery, 1st Faculty of Medicine, Charles University, Prague, Czech Republic.
Histochem J. 2002 May;34(5):247-53. doi: 10.1023/a:1021793530802.
Tandem-repeat C-type lectins (pattern-recognition receptors) with specificity for mannosides are intimately involved in antigen recognition, uptake, routing and presentation in macrophages and dendritic cells. In Langerhans cells, Langerin (CD207), a type-II transmembrane protein with a single C-type carbohydrate recognition domain attached to a heptad repeat in the neck region, which is likely to establish oligomers with an alpha-coiled-coil stalk, has been implicated in endocytosis and the formation of Birbeck granules. The structure of Langerin harbours essential motifs for Ca2+-binding and sugar accommodation. Lectin activity has previously been inferred by diminished antibody binding to cells in the presence of the glycan ligand mannan. In view of the complexity of the C-type lectin/lectin-like network, it is unclear what role Langerin plays for Langerhans cells in binding mannosides. In order to reveal in frozen tissue sections to what extent mannose-binding activity co-localizes with Langerin, we have used a synthetic marker, i.e. a neoglycoprotein carrying mannose maxiclusters, as a histochemical ligand, and computer-assisted fluorescence monitoring in a double-labelling procedure. Mannoside-binding capacity was detected in normal epithelial cells. Double labelling ensured the unambiguous assessment of the binding of the neoglycoprotein in Langerhans cells. Light-microscopically, its localization profile resembled the pattern of immunohistochemical detection of Langerin. This result has implications for suggesting rigorous controls in histochemical analysis of this cell type, because binding of kit reagents, i.e. mannose-rich glycoproteins horseradish peroxidase or avidin, to Langerin (or a spatially closely associated lectin) could yield false-positive signals. To show that recognition of carbohydrate ligands in dendritic cells is not restricted to mannose clusters, we have also documented binding of carrier-immobilized histo-blood group A trisaccharide, a ligand of galectin-3, which was not affected by the presence of a blocking antibody to Langerin. Remarkably, access to the carbohydrate recognition domain of Langerin appeared to be impaired in proliferatively active environments (malignancies, hair follicles), indicating presence of an endogenous ligand with high affinity to saturate the C-type lectin under these conditions.
对甘露糖苷具有特异性的串联重复C型凝集素(模式识别受体)密切参与巨噬细胞和树突状细胞中的抗原识别、摄取、转运和呈递。在朗格汉斯细胞中,朗格素(CD207)是一种II型跨膜蛋白,在颈部区域有一个与七肽重复序列相连的单个C型碳水化合物识别结构域,该结构域可能与α-卷曲螺旋茎形成寡聚体,参与内吞作用和伯贝克颗粒的形成。朗格素的结构包含钙结合和糖容纳的关键基序。以前通过在聚糖配体甘露聚糖存在下抗体与细胞结合减少来推断凝集素活性。鉴于C型凝集素/凝集素样网络的复杂性,尚不清楚朗格素在朗格汉斯细胞结合甘露糖苷中起什么作用。为了揭示在冷冻组织切片中甘露糖结合活性与朗格素共定位的程度,我们使用了一种合成标记物,即携带甘露糖最大簇的新糖蛋白,作为组织化学配体,并在双重标记程序中进行计算机辅助荧光监测。在正常上皮细胞中检测到甘露糖苷结合能力。双重标记确保了对新糖蛋白在朗格汉斯细胞中结合的明确评估。在光学显微镜下,其定位模式类似于朗格素免疫组织化学检测的模式。这一结果意味着在对这种细胞类型进行组织化学分析时需要严格控制,因为试剂盒试剂,即富含甘露糖的糖蛋白辣根过氧化物酶或抗生物素蛋白,与朗格素(或空间上紧密相关的凝集素)结合可能产生假阳性信号。为了表明树突状细胞中碳水化合物配体的识别不限于甘露糖簇,我们还记录了载体固定的组织血型A三糖(半乳糖凝集素-3的配体)的结合,其不受朗格素阻断抗体存在的影响。值得注意的是,在增殖活跃的环境(恶性肿瘤、毛囊)中,朗格素碳水化合物识别结构域的可及性似乎受损,表明在这些条件下存在具有高亲和力的内源性配体以饱和C型凝集素。