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当 p53 失活时,Ig 基因的体细胞超突变模式会发生改变。

The pattern of somatic hypermutation of Ig genes is altered when p53 is inactivated.

机构信息

Department of Molecular Genetics and Cell Biology, University of Chicago, 920 East 58th Street, Chicago, IL 60637, United States.

出版信息

Mol Immunol. 2010 Oct;47(16):2611-8. doi: 10.1016/j.molimm.2010.05.291. Epub 2010 Aug 5.

Abstract

Mice with a deletion of the p53 gene have normal antibody titers against sheep red blood cells and normal switching to all Ig isotypes. In older mice (11 and 16 weeks old) the somatic hypermutation (SHM) frequencies are progressively reduced. In young mice (8 weeks old) with p53 deletion, the SHM frequencies are normal. However, the mutation pattern is changed in all p53-/- mice: mutations at A are increased. Surprisingly, deletion of the Ung2 gene in addition to the deletion of p53 corrected the A mutation frequencies to those of control mice. Known interactions of p53 protein with several proteins involved in error-prone BER during SHM may explain these findings. There is no indication that the absence of p53 affects the function of AID. Inactivation of p21 does not alter SHM, supporting the idea that the p53 protein is involved in SHM by its direct association with the SHM process. There is no significant change of mutations at T. Thus, the hypermutability at A is strand-biased (transcription? replication?). The translesion polymerase pol eta has so far been found to be the sole mutator at A and T in mice. However, the pattern in p53-/- mice is compatible with the possible inhibition by p53 of another translesion polymerase, pol iota, which in the absence of p53 may be recruited to error-prone repair of abasic sites in SHM.

摘要

缺失 p53 基因的小鼠对绵羊红细胞具有正常的抗体效价,并且能够正常切换至所有 Ig 同种型。在年龄较大的小鼠(11 和 16 周龄)中,体细胞超突变(SHM)频率逐渐降低。在年轻的(8 周龄)p53 缺失的小鼠中,SHM 频率正常。但是,所有 p53-/-小鼠的突变模式都发生了变化:A 处的突变增加了。令人惊讶的是,除了 p53 的缺失外,Ung2 基因的缺失将 A 突变频率纠正为对照小鼠的水平。p53 蛋白与 SHM 期间易错 BER 中涉及的几种蛋白的已知相互作用可能解释了这些发现。没有迹象表明 p53 的缺失会影响 AID 的功能。p21 的失活不会改变 SHM,支持这样的观点,即 p53 蛋白通过其与 SHM 过程的直接关联参与 SHM。T 处的突变没有明显变化。因此,A 处的高突变率是链偏向的(转录?复制?)。迄今为止,在小鼠中已发现,只有 pol eta 跨损伤聚合酶是 A 和 T 处的唯一诱变酶。然而,p53-/-小鼠的模式与 p53 可能抑制另一种跨损伤聚合酶 pol iota 的可能性是一致的,在缺乏 p53 的情况下,pol iota 可能会被招募到 SHM 中易错修复碱基缺失。

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