Chang Y, Bosma M J
Institute for Cancer Research, Fox Chase Cancer Center, Philadelphia, PA 19111, USA.
Int Immunol. 1997 Mar;9(3):373-80. doi: 10.1093/intimm/9.3.373.
In this study we show that the ability of bone marrow pre-B cells to differentiate into B cells in H/L chain transgenic scid mice correlates with the ability of the transgenes to inhibit initiation of endogenous kappa gene rearrangement. Initiation of rearrangement was scored by assaying for DNA double-strand breaks (DSB) at the recombination signal/coding borders of J kappa 1 and J kappa 2. In H/L chain transgenic scid mice that develop B cells, we found little or no DSB; whereas in H chain only transgenic scid mice, in which pre-B cells are unable to give rise to B cells, we found a normal level of DSB but no VJ kappa coding joints. As scid mice are deficient in the repair of DSB, we suggest that initiation of kappa gene rearrangement in H chain transgenic scid mice causes B lineage cells to die at the late pre-B stage. In one transgenic scid line (Y-Sp6), which falls to generate B cells despite containing a H and L chain transgene, we found evidence for loss of B lineage cells at two stages of development: the pro-B to pre-B transitional stage and the late pre-B stage.
在本研究中,我们发现骨髓前B细胞在H/L链转基因scid小鼠中分化为B细胞的能力,与转基因抑制内源性κ基因重排起始的能力相关。通过检测Jκ1和Jκ2重组信号/编码边界处的DNA双链断裂(DSB)来评估重排的起始。在发育出B细胞的H/L链转基因scid小鼠中,我们发现很少或没有DSB;而在仅携带H链转基因的scid小鼠中,前B细胞无法分化为B细胞,我们发现DSB水平正常,但没有VJκ编码连接。由于scid小鼠在DSB修复方面存在缺陷,我们推测H链转基因scid小鼠中κ基因重排的起始导致B系细胞在晚期前B阶段死亡。在一个转基因scid品系(Y-Sp6)中,尽管含有H链和L链转基因,但仍无法产生B细胞,我们发现在两个发育阶段存在B系细胞丢失的证据:前B向pre-B过渡阶段和晚期前B阶段。