Mastrodonato Maria, Mentino Donatella, Lopedota Angela, Cutrignelli Annalisa, Scillitani Giovanni
Department of Biology, Laboratory of Histology and Comparative Anatomy, University of Bari Aldo Moro, via Orabona 4/a, Bari, I-70125, Italy.
Department of Pharmacy - Drug Sciences, University of Bari Aldo Moro, via Orabona 4/a, Bari, I-70125, Italy.
Microsc Res Tech. 2017 Feb;80(2):239-249. doi: 10.1002/jemt.22794. Epub 2016 Nov 1.
Intracellular glycans in the urothelium of urinary bladder of 10 adult male Landrace pigs were characterized in situ by immunohistochemical detection of Muc1 mucin by anti MUC1 from rabbit, conventional histochemical techniques (Periodic-Acid Schiff, Alcian Blue pH 2.5, High-Iron Diamine), and binding with 13 lectins (PNA, DBA, RCA-I, WGA, SBA, BSI-B4, ConA, AAA, UEA-I, LTA, LFA, MAA-II, SNA) combined with chemical and enzymatic pre-treatments (β-elimination, desulfation and neuraminidase) to gather reference data for this model animal. Muc1 mucin was detected in the secreting granules of superficial cells and the underlying layer of intermediate cells. The secreting granules in both intermediate cells and superficial cells were rich in carbohydrates, with the oligosaccharidic chains mostly O-linked to proteins. Glycoproteins were prevailing over glycosaminoglycans (GAGs). In both superficial and intermediate cells sulfated and/or sialylated glycans were present, sulfation decreasing in the deeper layers. Lectin-binding detected presence of terminal sialic acid linked mostly in α2,6 to GalNAc, Gal terminal or subterminal to sulfates, GalNAc, GlcNAc, and Fuc, mostly linked in α1,6, α1,3 α1,4 and α1,2 to GlcNAc or Gal, but not to lactosamine chains. Except for fucosylation, the oligosaccharidic chains in the glycoproteins of the urothelium of pig urinary bladder were similar to those linked to human MUC1, which is fundamental in cell adhesion and immunological processes in the urothelium. The co-distribution of Muc1 and saccharidic residues suggests that many of them are linked to the glycoprotein.
通过兔抗MUC1免疫组化检测Muc1黏蛋白、传统组织化学技术(过碘酸希夫反应、pH 2.5的阿尔辛蓝染色、高铁二胺染色)以及与13种凝集素(PNA、DBA、RCA-I、WGA、SBA、BSI-B4、ConA、AAA、UEA-I、LTA、LFA、MAA-II、SNA)结合,并进行化学和酶预处理(β-消除、脱硫和神经氨酸酶处理),对10只成年雄性长白猪膀胱尿路上皮中的细胞内聚糖进行原位表征,以收集该模式动物的参考数据。在表层细胞的分泌颗粒和中间层细胞的下层检测到Muc1黏蛋白。中间层细胞和表层细胞中的分泌颗粒富含碳水化合物,寡糖链大多与蛋白质O-连接。糖蛋白含量高于糖胺聚糖(GAGs)。在表层和中间层细胞中均存在硫酸化和/或唾液酸化聚糖,硫酸化在更深层减少。凝集素结合检测到末端唾液酸的存在,其大多以α2,6连接到GalNAc,Gal位于硫酸盐、GalNAc、GlcNAc和Fuc的末端或亚末端,大多以α1,6、α1,3、α1,4和α1,2连接到GlcNAc或Gal,但不连接到乳糖胺链。除岩藻糖基化外,猪膀胱尿路上皮糖蛋白中的寡糖链与连接到人类MUC1的寡糖链相似,这在尿路上皮的细胞黏附和免疫过程中至关重要。Muc1和糖残基的共分布表明其中许多与糖蛋白相连。