Park K, Kim J, Kim H S, Shin H S
Molecular Immunology Laboratory, Samsung Biomedical Research Institute, Seoul, Korea.
J Immunol. 1998 Dec 1;161(11):6128-32.
Ig somatic hypermutation contributes to the generation of high-affinity Abs that are essential for efficient humoral defense. The presence of multiple point mutations in rearranged Ig V genes and their immediate flanking sequences suggests that the DNA repair system may not be working properly in correcting point mutations introduced to the restricted region of Ig genes. We examined the DNA repair functions of germinal center (GC) centroblasts, which are the cells in which ongoing Ig hypermutation takes place. We found that GC centroblasts express all known components of the human DNA mismatch repair system, and that the system corrects DNA mismatches in a strand-specific manner in vitro. We conclude that general suppression of mismatch repair at the cellular level does not occur during somatic hypermutation.
免疫球蛋白体细胞超突变有助于产生高亲和力抗体,这对有效的体液防御至关重要。重排的免疫球蛋白V基因及其紧邻侧翼序列中存在多个点突变,这表明DNA修复系统在纠正引入免疫球蛋白基因受限区域的点突变时可能无法正常工作。我们研究了生发中心母细胞的DNA修复功能,生发中心母细胞是正在进行免疫球蛋白超突变的细胞。我们发现生发中心母细胞表达人类DNA错配修复系统的所有已知成分,并且该系统在体外以链特异性方式纠正DNA错配。我们得出结论,在体细胞超突变过程中不会在细胞水平上普遍抑制错配修复。