Cascalho M, Wong J, Steinberg C, Wabl M
Department of Microbiology and Immunology, University of California, San Francisco, CA 94143-0670, USA.
Science. 1998 Feb 20;279(5354):1207-10. doi: 10.1126/science.279.5354.1207.
Mice homozygous for a disrupted allele of the mismatch repair gene Pms2 have a mutator phenotype. When this allele is crossed into quasi-monoclonal (QM) mice, which have a very limited B cell repertoire, homozygotes have fewer somatic mutations at the immunoglobulin heavy chain and lambda chain loci than do heterozygotes or wild-type QM mice. That is, mismatch repair seems to contribute to somatic hypermutation rather than stifling it. It is suggested that at immunoglobulin loci in hypermutable B cells, mismatched base pairs are "corrected" according to the newly synthesized DNA strand, thereby fixing incipient mutations instead of eliminating them.
错配修复基因Pms2的等位基因发生破坏的纯合小鼠具有突变体表型。当将该等位基因导入B细胞谱系非常有限的准单克隆(QM)小鼠中时,纯合子在免疫球蛋白重链和λ链基因座处的体细胞突变比杂合子或野生型QM小鼠少。也就是说,错配修复似乎有助于体细胞超突变,而不是抑制它。有人提出,在高度可变的B细胞的免疫球蛋白基因座处,错配的碱基对会根据新合成的DNA链进行“校正”,从而固定初始突变而不是消除它们。