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E 盒在体细胞高频突变靶向中的关键上下文相关作用。

A critical context-dependent role for E boxes in the targeting of somatic hypermutation.

机构信息

Department of Immunobiology, Yale University School of Medicine, New Haven, CT 06520, USA.

出版信息

J Immunol. 2013 Aug 15;191(4):1556-66. doi: 10.4049/jimmunol.1300969. Epub 2013 Jul 8.

Abstract

Secondary B cell repertoire diversification occurs by somatic hypermutation (SHM) in germinal centers following Ag stimulation. In SHM, activation-induced cytidine deaminase mutates the V region of the Ig genes to increase the affinity of Abs. Although SHM acts primarily at Ig loci, low levels of off-target mutation can result in oncogenic DNA damage, illustrating the importance of understanding SHM targeting mechanisms. A candidate targeting motif is the E box, a short DNA sequence (CANNTG) found abundantly in the genome and in many SHM target genes. Using a reporter assay in chicken DT40 B cells, we previously identified a 1928-bp portion of the chicken IgL locus capable of supporting robust SHM. In this article, we demonstrate that mutation of all 20 E boxes in this fragment reduces SHM targeting activity by 90%, and that mutation of subsets of E boxes reveals a functional hierarchy in which E boxes within "core" targeting regions are of greatest importance. Strikingly, when the sequence and spacing of the 20 E boxes are preserved but surrounding sequences are altered, SHM targeting activity is eliminated. Hence, although E boxes are vital SHM targeting elements, their function is completely dependent on their surrounding sequence context. These results suggest an intimate cooperation between E boxes and other sequence motifs in SHM targeting to Ig loci and perhaps also in restricting mistargeting to certain non-Ig loci.

摘要

次级 B 细胞受体多样性是通过抗原刺激后的生发中心体细胞高频突变(SHM)产生的。在 SHM 中,激活诱导的胞嘧啶脱氨酶会突变 Ig 基因的 V 区,从而提高抗体的亲和力。尽管 SHM 主要作用于 Ig 基因座,但低水平的脱靶突变可导致致癌性 DNA 损伤,这说明了理解 SHM 靶向机制的重要性。一个候选的靶向基序是 E 盒,它是基因组和许多 SHM 靶基因中丰富存在的短 DNA 序列(CANNTG)。我们之前在鸡 DT40 B 细胞的报告基因实验中,鉴定出了鸡 IgL 基因座中能够支持强大 SHM 的 1928bp 片段。在本文中,我们证明了该片段中所有 20 个 E 盒的突变将 SHM 靶向活性降低了 90%,而 E 盒亚组的突变揭示了一个功能层次结构,其中“核心”靶向区域内的 E 盒最为重要。引人注目的是,当 20 个 E 盒的序列和间距保持不变但周围序列发生改变时,SHM 靶向活性则完全丧失。因此,尽管 E 盒是至关重要的 SHM 靶向元件,但它们的功能完全取决于其周围序列的上下文。这些结果表明,E 盒与 SHM 靶向 Ig 基因座的其他序列基序之间存在密切合作,也许还可以限制脱靶至某些非 Ig 基因座。

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本文引用的文献

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