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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Somatic hypermutation of immunoglobulin genes: lessons from proliferating cell nuclear antigen K-164R mutant mice
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Somatic hypermutation of immunoglobulin genes: lessons from proliferating cell nuclear antigen K-164R mutant mice

机译:免疫球蛋白基因的体细胞超突变:增殖细胞核抗原K-164R突变小鼠的教训

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摘要

Proliferating cell nuclear antigen (PCNA) encircles DNA as a ring-shaped homotrimer and, by tethering DNA polymerases to their template, PCNA serves as a critical replication factor. In contrast to high-fidelity DNA polymerases, the activation of low-fidelity translesion synthesis (TLS) DNA polymerases seems to require damage-inducible monoubiquitylation (Ub) of PCNA at lysine residue 164 (PCNA-Ub). TLS polymerases can tolerate DNA damage, i.e. they can replicate across DNA lesions. The lack of proofreading activity, however, renders TLS highly mutagenic. The advantage is that B cells use mutagenic TLS to introduce somatic mutations in immunoglobulin (Ig) genes to generate high-affinity antibodies. Given the critical role of PCNA-Ub in activating TLS and the role of TLS in establishing somatic mutations in immunoglobulin genes, we analysed the mutation spectrum of somatically mutated immunoglobulin genes in B cells from PCNA(K164R) knock-in mice. A 10-fold reduction in A/T mutations is associated with a compensatory increase in G/C mutations-a phenotype similar to Pol eta and mismatch repair-deficient B cells. Mismatch recognition, PCNA-Ub and Pol eta probably act within one pathway to establish the majority of mutations at template A/T. Equally relevant, the G/C mutator(s) seems largely independent of PCNA(K164) modification.
机译:增殖细胞核抗原(PCNA)将DNA围成环状同型三聚体,通过将DNA聚合酶束缚在模板上,PCNA成为关键的复制因子。与高保真DNA聚合酶相反,低保真跨病变合成(TLS)DNA聚合酶的激活似乎需要PCNA在赖氨酸残基164(PCNA-Ub)的损伤诱导单泛素化(Ub)。 TLS聚合酶可以耐受DNA损伤,即它们可以在DNA损伤中复制。但是,由于缺乏校对活动,使得TLS具有很高的诱变性。优点是B细胞使用诱变TLS在免疫球蛋白(Ig)基因中引入体细胞突变,以产生高亲和力抗体。鉴于PCNA-Ub在激活TLS中的关键作用以及TLS在建立免疫球蛋白基因的体细胞突变中的作用,我们分析了PCNA(K164R)敲入小鼠B细胞中体细胞突变的免疫球蛋白基因的突变谱。 A / T突变减少10倍与G / C突变的代偿性增加有关,G / C突变的表型类似于Pol eta和错配修复缺陷的B细胞。错配识别,PCNA-Ub和Pol eta可能在一种途径中起作用,以在模板A / T处建立大多数突变。同样重要的是,G / C变体似乎在很大程度上与PCNA(K164)修改无关。

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