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初级抗体形成细胞和次级B细胞由不同的前体细胞亚群产生。

Primary antibody-forming cells and secondary B cells are generated from separate precursor cell subpopulations.

作者信息

Linton PJ L, Decker D J, Klinman N R

机构信息

Department of Immunology, Scripps Clinic and Research Foundation, La Jolla, California 92037.

出版信息

Cell. 1989 Dec 22;59(6):1049-59. doi: 10.1016/0092-8674(89)90761-7.

Abstract

Two precursor cell subpopulations have been isolated from the spleen cells of nonimmune mice. The major B cell subpopulation binds high levels of the J11D monoclonal antibody and, upon T cell-dependent antigenic stimulation, gives rise to primary antibody-forming cell clones but not secondary B cells. A minority of the 10%-14% of Ia+ precursors that bind low levels of J11D (J11Dlo) also generate antibody-forming cell clones after primary stimulation. However, over 70% of J11Dlo precursors yield no primary antibody-forming cell clones but instead give rise to secondarily responsive B cells. The existence of a distinct precursor cell subpopulation that is responsible for the generation of B cell memory is further evidenced by the distribution of variable region clonotypes among J11Dlo primary precursors, which resembles the clonotype patterns of secondary B cells, and by the accumulation of somatic mutations in their clonal progeny.

摘要

已从非免疫小鼠的脾细胞中分离出两个前体细胞亚群。主要的B细胞亚群与高水平的J11D单克隆抗体结合,在T细胞依赖性抗原刺激下,产生初级抗体形成细胞克隆,但不产生次级B细胞。10%-14%低水平结合J11D(J11Dlo)的Ia+前体细胞中的少数在初次刺激后也产生抗体形成细胞克隆。然而,超过70%的J11Dlo前体细胞不产生初级抗体形成细胞克隆,而是产生次级反应性B细胞。负责B细胞记忆产生的独特前体细胞亚群的存在,进一步通过J11Dlo初级前体细胞中可变区克隆型的分布得到证明,其类似于次级B细胞的克隆型模式,并且通过其克隆后代中体细胞突变的积累得到证明。

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