Sairam M R, Linggen J, Sairam J, Bhargavi G N
Reproduction Research Laboratory, Clinical Research Institute of Montreal, Que., Canada.
Biochem Cell Biol. 1990 May;68(5):889-93. doi: 10.1139/o90-131.
The biological properties of glycosylated (native) and deglycosylated gonadotropins are different. The immunological characteristics of antibodies prepared against deglycosylated lutropin and human chorionic gonadotropin were investigated. Distinct antibodies of rabbit polyclonal antisera against deglycosylated lutropin and deglycosylated chorionic gonadotropin were separated by affinity chromatography on divinylsulfonyl-Sepharose-immobilized hormone or antagonist columns, respectively, in successive runs. Antibodies that could discriminate between agonist and antagonistic forms of the hormones could thus be obtained. In radioimmunoassays using 125I-labeled antagonists and respective antagonist antibodies, only the deglycosylated hormones or their deglycosylated alpha-subunits showed preferential reaction. Based on recombinations using different deglycosylated subunits, it was concluded that the loss of antennary sugars in the alpha-subunits was mainly responsible for the changes that led to the formation of antagonist-specific antibodies. Only the agonist-specific antibody could neutralize hormone action. Thus, the type and extent of glycosylation appears to influence the antigenic structure of these secreted glycoproteins.
糖基化(天然)促性腺激素和去糖基化促性腺激素的生物学特性有所不同。我们研究了针对去糖基化促黄体生成素和人绒毛膜促性腺激素制备的抗体的免疫学特征。在连续的实验中,分别通过在固定化激素或拮抗剂的二乙烯砜 - 琼脂糖亲和柱上进行亲和层析,分离出了针对去糖基化促黄体生成素和去糖基化绒毛膜促性腺激素的兔多克隆抗血清中的不同抗体。由此可以获得能够区分激素激动剂和拮抗剂形式的抗体。在使用¹²⁵I标记的拮抗剂和相应拮抗剂抗体的放射免疫分析中,只有去糖基化激素或其去糖基化α亚基表现出优先反应。基于使用不同去糖基化亚基的重组实验,得出结论:α亚基中天线状糖的缺失是导致形成拮抗剂特异性抗体变化的主要原因。只有激动剂特异性抗体能够中和激素作用。因此,糖基化的类型和程度似乎会影响这些分泌型糖蛋白的抗原结构。