Chen C, Ratcliffe N A, Rowley A F
Biomedical and Physiological Research Group, School of Biological Sciences, University College of Swansea, Singleton Park, U.K.
Biochem J. 1993 Aug 15;294 ( Pt 1)(Pt 1):181-90. doi: 10.1042/bj2940181.
Three agglutinins (lectins), designated BDL1, BDL2 and BDL3, were identified in the haemolymph of the cockroach Blaberus discoidalis by erythrocyte cross-adsorption and sugar inhibition tests. With the use of (NH4)2SO4 fractionation, anion-exchange and affinity chromatography, BDL1 and BDL2 have been purified to homogeneity, and BDL3 has been partially purified to three bands on SDS/PAGE. BDL1 has a molecular-mass estimate of 390 kDa by gel filtration and approx. 158 kDa by SDS/PAGE under non-reducing conditions, further reduced to subunits of 36 kDa under reducing conditions. BDL2 has a molecular mass of approx. 140 kDa and is composed of subunits of 67 kDa which can be further reduced to identical subunits of 23 kDa. Isoelectric focusing in agarose gels revealed that BDL1 and BDL2 both focused as single bands at pH 6.0 and pH 5.2 respectively. The purified forms of BDL1 and BDL2 were stained by the periodic acid/Schiff's reagent showing that both lectins are glycoproteins. In addition, BDL1 was deglycosylated by endo-beta-N-acetylglucosaminidase H. Immunological tests showed that these three lectins are not structurally related. All three lectins bind galactose but have different specificities for binding other sugars and for a range of vertebrate erythrocytes. BDL1 is specifically inhibited by D-(+)-glucose, D-(+)-mannose and N-acetyl-D-mannosamine, but not by N-acetyl-D-glucosamine, and BDL2 is inhibited by N-acetyl-D-glucosamine, but not by D-(+)-glucose, D-(+)-mannose or N-acetyl-D-mannosamine. BDL3 is strongly inhibited by N-acetyl-D-galactosamine, but not by any of the other above-mentioned sugars. Erythrocyte specificities showed that BDL1 is more specific for rabbit than mouse erythrocytes, whereas BDL2 and BDL3 are more specific for mouse than rabbit erythrocytes. The haemagglutinating activities of both the serum and isolated lectins are Ca(2+)-dependent. Localization of BDL1 and BDL2 with fluorescein isothiocyanate-labelled antibodies showed that both lectins are associated with the granules and other areas of the cytoplasm of all blood cell types.
通过红细胞交叉吸附和糖抑制试验,在蜚蠊(Blaberus discoidalis)的血淋巴中鉴定出三种凝集素(外源凝集素),分别命名为BDL1、BDL2和BDL3。利用硫酸铵分级分离、阴离子交换和亲和层析法,BDL1和BDL2已被纯化至均一,BDL3在SDS/PAGE上已部分纯化至三条带。通过凝胶过滤法估计BDL1的分子量为390 kDa,在非还原条件下SDS/PAGE显示约为158 kDa,在还原条件下进一步降解为36 kDa的亚基。BDL2的分子量约为140 kDa,由67 kDa的亚基组成,可进一步降解为相同的23 kDa亚基。在琼脂糖凝胶中进行等电聚焦显示,BDL1和BDL2分别在pH 6.0和pH 5.2处聚焦为单一条带。BDL1和BDL2的纯化形式用高碘酸/席夫试剂染色,表明这两种凝集素都是糖蛋白。此外,BDL1被内切β-N-乙酰氨基葡糖苷酶H去糖基化。免疫试验表明,这三种凝集素在结构上不相关。所有三种凝集素都结合半乳糖,但对结合其他糖类和一系列脊椎动物红细胞具有不同的特异性。BDL1被D-(+)-葡萄糖、D-(+)-甘露糖和N-乙酰-D-甘露糖胺特异性抑制,但不被N-乙酰-D-葡糖胺抑制,BDL2被N-乙酰-D-葡糖胺抑制,但不被D-(+)-葡萄糖、D-(+)-甘露糖或N-乙酰-D-甘露糖胺抑制。BDL3被N-乙酰-D-半乳糖胺强烈抑制,但不被上述任何其他糖类抑制。红细胞特异性表明,BDL1对兔红细胞比对小鼠红细胞更具特异性,而BDL2和BDL3对小鼠红细胞比对兔红细胞更具特异性。血清和分离出的凝集素的血凝活性均依赖于Ca(2+)。用异硫氰酸荧光素标记的抗体对BDL1和BDL2进行定位显示,这两种凝集素都与所有血细胞类型的颗粒和细胞质的其他区域相关。