Matsumoto Yuka, Saito Toshie, Hoshi Kyoka, Ito Hiromi, Kariya Yoshinobu, Nagae Masamichi, Yamaguchi Yoshiki, Hagiwara Yoshiaki, Kinoshita Noriaki, Wada Ikuo, Saito Kiyoshi, Honda Takashi, Hashimoto Yasuhiro
Department of Neurosurgery and Department of Biochemistry, Fukushima Medical University, 1 Hikarigaoka, Fukushima, Fukushima 960-1295, Japan; Structural Glycobiology Team, Systems Glycobiology Research Group, RIKEN-Max Planck Joint Research Center for Systems Chemical Biology, Global Research Cluster, RIKEN, 2-1 Hirosawa, Wako-Shi, Saitama 351-0198, Japan; Department of Biological Sciences, Immuno-Biological Laboratories, Co. Ltd., 1091-1 Naka, Fujioka, Gunma 375-0005, Japan; GeneticLab Co., Ltd., 15-28-196 Kita 9-Jyu, Nishi, Tyuou-Ku, Sapporo-City, Hokkaido 060-009, Japan; Department of Cell Science, Department of Human Life Science; and Fukushima Industry-University-Government Research Center, Fukushima Medical University, 1 Hikarigaoka, Fukushima, Fukushima 960-1295, Japan
Department of Neurosurgery and Department of Biochemistry, Fukushima Medical University, 1 Hikarigaoka, Fukushima, Fukushima 960-1295, Japan; Structural Glycobiology Team, Systems Glycobiology Research Group, RIKEN-Max Planck Joint Research Center for Systems Chemical Biology, Global Research Cluster, RIKEN, 2-1 Hirosawa, Wako-Shi, Saitama 351-0198, Japan; Department of Biological Sciences, Immuno-Biological Laboratories, Co. Ltd., 1091-1 Naka, Fujioka, Gunma 375-0005, Japan; GeneticLab Co., Ltd., 15-28-196 Kita 9-Jyu, Nishi, Tyuou-Ku, Sapporo-City, Hokkaido 060-009, Japan; Department of Cell Science, Department of Human Life Science; and Fukushima Industry-University-Government Research Center, Fukushima Medical University, 1 Hikarigaoka, Fukushima, Fukushima 960-1295, Japan.
J Biochem. 2015 Apr;157(4):211-6. doi: 10.1093/jb/mvu071. Epub 2014 Nov 25.
We previously found that a lectin, Sambucus sieboldiana agglutinin (SSA), bound to α2,6-sialylated glycan epitopes on transferrin and inhibited anti-transferrin antibody binding to the antigen in ELISA (SSA inhibition). Here we report that SSA inhibition is applicable to immunohistochemistry, localizing α2,6-sialylated transferrin in the liver. Immunohistochemistry using anti-transferrin polyclonal antibody revealed that transferrin was detected in hepatocytes near interlobular veins. Addition of SSA lectin markedly attenuated the staining. Sialidase treatment of a liver section abolished SSA binding and concomitantly cancelled SSA inhibition, suggesting that SSA binding to glycan epitopes on the section was essential for the inhibition. To examine the importance of proximity between antigen epitopes and SSA-binding (glycosylation) sites, we prepared two anti-peptide antibodies against partial amino acid sequences of transferrin. One antibody (Tf-596Ab) is against a peptide sequence, Cys596-Ala614, which is proximal to N-glycosylation sites (Asn-432 and Asn-630). The other (Tf-120Ab) is against a peptide sequence, Val120-Cys137, distal to the sites. The staining signals of Tf-596Ab were reduced by the addition of SSA, whereas those of Tf-120Ab were reduced only a little. This result suggests that proximity of the antigen epitope to SSA binding sites is critical for SSA inhibition in immunohistochemistry.
我们之前发现,一种凝集素,黑接骨木凝集素(SSA),可与转铁蛋白上的α2,6-唾液酸化聚糖表位结合,并在酶联免疫吸附测定(SSA抑制)中抑制抗转铁蛋白抗体与抗原的结合。在此我们报告,SSA抑制可应用于免疫组织化学,用于在肝脏中定位α2,6-唾液酸化转铁蛋白。使用抗转铁蛋白多克隆抗体进行的免疫组织化学显示,在小叶间静脉附近的肝细胞中检测到了转铁蛋白。添加SSA凝集素可显著减弱染色。对肝切片进行唾液酸酶处理消除了SSA结合,并同时消除了SSA抑制,这表明SSA与切片上聚糖表位的结合对于抑制至关重要。为了研究抗原表位与SSA结合(糖基化)位点之间接近程度的重要性,我们制备了两种针对转铁蛋白部分氨基酸序列的抗肽抗体。一种抗体(Tf-596Ab)针对的肽序列为Cys596-Ala614,该序列靠近N-糖基化位点(Asn-432和Asn-630)。另一种(Tf-120Ab)针对的肽序列为Val120-Cys137,该序列远离这些位点。添加SSA后,Tf-596Ab的染色信号减弱,而Tf-120Ab的染色信号仅略有减弱。这一结果表明,在免疫组织化学中,抗原表位与SSA结合位点的接近程度对于SSA抑制至关重要。