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首页> 外文期刊>Molecular Immunology >J(H)6 downstream intronic sequence is dispensable for RNA polymerase II accumulation and somatic hypermutation of the variable gene in Ramos cells
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J(H)6 downstream intronic sequence is dispensable for RNA polymerase II accumulation and somatic hypermutation of the variable gene in Ramos cells

机译:J(h)6下游内肾序列可分配RNA聚合酶II积聚和RAMOS细胞变量基因的体细胞高原

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Activation-induced deaminase (AID) introduces nucleotide substitutions within the variable region of immunoglobulin genes to promote antibody diversity. This activity, which is limited to 1.5 kb downstream of the variable gene promoter, mutates both the coding exon and downstream intronic sequences. We recently reported that RNA polymerase II accumulates in these regions during transcription in mice. This build-up directly correlates with the area that is accessible to AID, and manipulation of RNA polymerase II levels alters the mutation frequency. To address whether the intronic DNA sequence by itself can regulate RNA polymerase II accumulation and promote mutagenesis, we deleted 613 bp of DNA downstream of the J(H)6 intron in the human Ramos B cell line. The loss of this sequence did not alter polymerase abundance or mutagenesis in the variable gene, suggesting that most of the intronic sequence is dispensable for somatic hypermutation.
机译:活化诱导的脱氨酶(助剂)在免疫球蛋白基因的可变区内引入核苷酸取代,以促进抗体多样性。 该活性限制在可变基因启动子下游的1.5 kB,突变编码外显子和下游内肾序列。 我们最近报道,RNA聚合酶II在小鼠的转录过程中积聚在这些区域中。 这种积聚与可用于辅助的区域直接相关,并且RNA聚合酶II水平的操纵改变了突变频率。 为了解决内肠病DNA序列本身可以调节RNA聚合酶II积累和促进诱变,我们在人Ramos B细胞中删除了J(h)6内含子下游的DNA 613bp。 该序列的丧失在可变基因中没有改变聚合酶丰度或诱变,表明大多数内肾序列可分配用于体细胞高原。

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