Reth M G, Ammirati P, Jackson S, Alt F W
Nature. 1985;317(6035):353-5. doi: 10.1038/317353a0.
The variable (V) regions of heavy and light immunoglobulin chains are encoded by multiple germline DNA elements which are assembled into complete variable-region genes in precursor(pre-) B lymphocytes. The heavy-chain V region (VH) is assembled from three separate germline DNA elements, the variable (VH), diversity (D) and joining (JH) segments; whereas light-chain variable regions of either the kappa or lambda type are assembled from two elements, the VL and JL. Analysis of tumour cell lines or sorted cell populations which represent early and late pre-B cells has suggested that heavy-chain assembly and expression generally precedes that of light chains; but, primarily because of the lack of appropriate model systems to study the phenomenon, the mechanism and significance of this apparently orderly differentiation process are much debated. Here we describe for the first time a transformed cell line, 300-19, which sequentially undergoes all of the immunoglobulin gene rearrangement and expression events associated with the differentiation of pre-B cells to surface immunoglobulin-positive B lymphocytes. Analysis of the in vitro differentiation of 300-19 cells provides direct evidence for distinct differentiation phases of first VH and subsequently VL assembly during B-cell differentiation. Furthermore, these analyses suggest that the mu heavy chain, resulting from a productive VHDJH rearrangement, has both a positive and a negative regulatory role in mediating this ordered differentiation process, that is, signalling the cessation of VH gene assembly and simultaneously signalling the onset of VL assembly.
重链和轻链免疫球蛋白的可变(V)区由多个种系DNA元件编码,这些元件在前体B淋巴细胞中组装成完整的可变区基因。重链V区(VH)由三个单独的种系DNA元件组装而成,即可变(VH)、多样性(D)和连接(JH)片段;而κ或λ型轻链可变区则由两个元件组装而成,即VL和JL。对代表早期和晚期前B细胞的肿瘤细胞系或分选细胞群体的分析表明,重链组装和表达通常先于轻链;但是,主要由于缺乏合适的模型系统来研究这一现象,这种明显有序的分化过程的机制和意义备受争议。在此,我们首次描述了一种转化细胞系300-19,它依次经历了与前B细胞分化为表面免疫球蛋白阳性B淋巴细胞相关的所有免疫球蛋白基因重排和表达事件。对300-19细胞体外分化的分析为B细胞分化过程中首先VH组装,随后VL组装的不同分化阶段提供了直接证据。此外,这些分析表明,由有效的VHDJH重排产生的μ重链在介导这种有序分化过程中具有正负调节作用,即发出VH基因组装停止的信号,同时发出VL组装开始的信号。