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砷酸盐系统中的亲和力成熟:高亲和力抗体亚群缺乏优势。

Affinity maturation in the arsonate system: lack of dominance of high-affinity antibody subpopulations.

作者信息

Gayà A, Nieto A, Moreno C, Vives J

出版信息

Immunology. 1986 Aug;58(4):541-4.

Abstract

Affinity maturation was studied by the analysis of the kinetics of the appearance of antibody subpopulations with different affinities during the immune response, using an hapten-inhibition ELISA. The immune response in KLH-Ar-immunized A/J mice was used as a model system. Five antibody subpopulations of different affinity (10(3)-10(7) M-1) could be detected, the relative concentrations of which changed during affinity maturation. The high-affinity antibody subpopulations did not represent the major fraction at any stage during affinity maturation. The appearance of the highest affinity subpopulation (10(7) M-1), despite exhibiting relative concentrations no higher than 12%, produced an important increase in average affinity. On the other hand, its disappearance at the end of the maturation process could explain the average affinity decrease observed at this stage. Our results indicate that affinity maturation cannot be explained by the dominance of high-affinity clones, as proposed by Siskind & Benacerraf (1969). The increase in affinity could rather be due to the progressive appearance of low percentages of high-affinity clones, which are not present in the primary response and never become dominant.

摘要

通过使用半抗原抑制酶联免疫吸附测定法(ELISA)分析免疫应答期间不同亲和力抗体亚群出现的动力学,研究亲和力成熟情况。以钥孔血蓝蛋白-芳基(KLH-Ar)免疫的A/J小鼠的免疫应答作为模型系统。可以检测到五个不同亲和力(10³ - 10⁷ M⁻¹)的抗体亚群,其相对浓度在亲和力成熟过程中发生变化。在亲和力成熟的任何阶段,高亲和力抗体亚群都不占主要部分。尽管最高亲和力亚群(10⁷ M⁻¹)的相对浓度不高于12%,但其出现导致平均亲和力显著增加。另一方面,其在成熟过程结束时的消失可以解释在此阶段观察到的平均亲和力下降。我们的结果表明,亲和力成熟不能像西斯金德和贝纳塞拉夫(1969年)所提出的那样,用高亲和力克隆的优势来解释。亲和力的增加更可能是由于高亲和力克隆的低百分比逐渐出现,这些克隆在初次应答中不存在,也从未占主导地位。

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