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免疫球蛋白可变基因体细胞超突变的双重谜团:靶向作用与机制

Dual enigma of somatic hypermutation of immunoglobulin variable genes: targeting and mechanism.

作者信息

Winter D B, Gearhart P J

机构信息

Laboratory of Molecular Genetics, National Institute on Aging, National Institutes of Health, Baltimore, MD 21224, USA.

出版信息

Immunol Rev. 1998 Apr;162:89-96. doi: 10.1111/j.1600-065x.1998.tb01432.x.

Abstract

The immunoglobulin loci are uniquely unstable regions of the genome which undergo as much mutation and selection in a matter of days as a species can undergo in generations of evolution. We have studied the mutational pattern and targeting of this unusual hypermutation process over the past 16 years. The pattern of somatic mutations in rearranged variable (V) genes differs from the pattern of meiotic mutations, indicating that a different mechanism generates hypermutation than generates spontaneous mutation. Hypermutations begin on the 5' end of rearranged V genes downstream of the transcription initiation site and continue through the V exon and into the 3'-flanking region before tapering off. Mutations are located randomly throughout the DNA sequence and exhibit strand bias. The targeting of mutations to the region in and around the rearranged V gene appears to require interactions between the promoter and downstream intronic DNA sequences. The same mechanism that initiates hypermutation around V genes may also produce double-strand breaks that catalyze homologous recombination between rearranged V genes on two chromosomal alleles. With this data we have built a model of hypermutation which predicts that V-region DNA is destabilized at the nuclear matrix during transcription and undergoes strand breaks.

摘要

免疫球蛋白基因座是基因组中独特的不稳定区域,其在数天内经历的突变和选择与一个物种在几代进化过程中所经历的一样多。在过去的16年里,我们研究了这种不寻常的高突变过程的突变模式和靶向性。重排可变(V)基因中的体细胞突变模式不同于减数分裂突变模式,这表明产生高突变的机制与产生自发突变的机制不同。高突变开始于转录起始位点下游重排V基因的5'端,穿过V外显子并进入3'侧翼区域,然后逐渐减少。突变随机分布在整个DNA序列中,并表现出链偏向性。将突变靶向重排V基因及其周围区域似乎需要启动子与下游内含子DNA序列之间的相互作用。在V基因周围引发高突变的相同机制也可能产生双链断裂,从而催化两个染色体等位基因上重排V基因之间的同源重组。基于这些数据,我们构建了一个高突变模型,该模型预测V区DNA在转录过程中在核基质处不稳定并发生链断裂。

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