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Immunoglobulin switch μ sequence causes RNA polymerase II accumulation and reduces dA hypermutation

机译:免疫球蛋白开关μ序列引起RNA聚合酶II积累并减少dA超突变

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Repetitive DNA sequences in the immunoglobulin switch μ region form RNA-containing secondary structures and undergo hypermutation by activation-induced deaminase (AID). To examine how DNA structure affects transcription and hypermutation, we mapped the position of RNA polymerase II molecules and mutations across a 5-kb region spanning the intronic enhancer to the constant μ gene. For RNA polymerase II, the distribution was determined by nuclear run-on and chromatin immunoprecipitation assays in B cells from uracil-DNA glycosylase (UNG)–deficient mice stimulated ex vivo. RNA polymerases were found at a high density in DNA flanking both sides of a 1-kb repetitive sequence that forms the core of the switch region. The pileup of polymerases was similar in unstimulated and stimulated cells from Ung?/? and Aid?/?Ung?/? mice but was absent in cells from mice with a deletion of the switch region. For mutations, DNA was sequenced from Ung?/? B cells stimulated in vivo. Surprisingly, mutations of A nucleotides, which are incorporated by DNA polymerase η, decreased 10-fold before the repetitive sequence, suggesting that the polymerase was less active in this region. We propose that altered DNA structure in the switch region pauses RNA polymerase II and limits access of DNA polymerase η during hypermutation.
机译:免疫球蛋白开关μ区域中的重复DNA序列形成了含RNA的二级结构,并通过激活诱导的脱氨酶(AID)进行超突变。为了检查DNA结构如何影响转录和超突变,我们绘制了RNA聚合酶II分子的位置以及跨越内含子增强子到恒定μ基因的5-kb区域的突变。对于RNA聚合酶II,通过核外用和染色质免疫沉淀测定法确定了离体刺激的尿嘧啶DNA糖基化酶(UNG)缺陷小鼠的B细胞中的分布。在形成开关区域核心的1-kb重复序列两侧的DNA中,发现了高密度的RNA聚合酶。来自Ungα/β的未刺激和刺激的细胞中聚合酶的堆积相似。和援助?/?Ung?/?小鼠,但缺少小鼠的开关区域缺失的细胞。对于突变,从Ungα/β测序DNA。体内刺激B细胞。出人意料的是,DNA聚合酶η掺入的A核苷酸突变在重复序列之前降低了10倍,表明该聚合酶在该区域的活性较低。我们提议改变区域中的DNA结构改变暂停RNA聚合酶II,并限制超突变过程中DNA聚合酶η的访问。

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