Department of Cell Biology, Albert Einstein College of Medicine, Bronx, NY, USA.
Mol Immunol. 2011 Oct;49(1-2):297-303. doi: 10.1016/j.molimm.2011.08.024. Epub 2011 Sep 25.
The immunoglobulin heavy (Igh) chain locus is subject to precisely regulated processes, such as variable region gene formation through recombination of variable (V(H)), diversity (D(H)), and joining (J(H)) segments, class switching and somatic hypermutation. The 3' regulatory region (3' RR) is a key regulator of the Igh locus, and, as revealed by deletions in mouse plasma cell lines and mice, is required for IgH expression as well as class switching. One of the mechanisms by which the 3' RR regulates its targets is through long-range physical interactions. Such interactions between elements of the 3' RR and a target site in the IgH transcription unit have been detected in plasma cells, and in resting and switching B cells, where they have been associated with IgH expression and class switching, respectively. Here, we report that lentiviral shRNA knockdown of transcription factors, CTCF, Oct-2, or OBF-1/OCA-B, had no discernible defects in loop formation or H chain expression in plasma cells. J(H)-3' RR interactions in pre-B cell lines were specifically associated with IgH expression. J(H)-3' RR interactions were not detected in either Pax5-deficient or RAG-deficient pro-B cells, but were apparent in an Abelson-derived pro-B cell line. These observations imply that the 3' RR has different loop interactions with target Igh sequences at different stages of B cell development and Igh regulation.
免疫球蛋白重链(Igh)基因座受到精确调控的过程,如通过可变(V(H))、多样性(D(H))和连接(J(H))片段的重组形成可变区基因、类别转换和体细胞高频突变。3' 调控区(3'RR)是 Igh 基因座的关键调控因子,如通过小鼠浆细胞瘤系和小鼠中的缺失所揭示的,它是 IgH 表达以及类别转换所必需的。3'RR 调节其靶标的机制之一是通过长距离物理相互作用。在浆细胞中已经检测到 3'RR 元件与 IgH 转录单元中的靶位点之间的这种相互作用,并且在静止和转换 B 细胞中分别与 IgH 表达和类别转换相关。在这里,我们报告说,慢病毒 shRNA 敲低转录因子 CTCF、Oct-2 或 OBF-1/OCA-B 对浆细胞中的环形成或 H 链表达没有明显缺陷。在 pre-B 细胞系中 J(H)-3'RR 相互作用与 IgH 表达特异性相关。在 Pax5 缺陷或 RAG 缺陷的前 B 细胞中未检测到 J(H)-3'RR 相互作用,但在 Abelson 衍生的前 B 细胞系中明显存在。这些观察结果表明,3'RR 在 B 细胞发育和 Igh 调节的不同阶段与靶 Igh 序列具有不同的环相互作用。