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小鼠3' IgH调控区域内的二元对称性包括两个几乎相同的增强子(Cα3'E和hs3)。

Dyad symmetry within the mouse 3' IgH regulatory region includes two virtually identical enhancers (C alpha3'E and hs3).

作者信息

Saleque S, Singh M, Little R D, Giannini S L, Michaelson J S, Birshtein B K

机构信息

Department of Cell Biology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

出版信息

J Immunol. 1997 May 15;158(10):4780-7.

PMID:9144492
Abstract

The transcription of the murine Ig heavy chain locus is regulated not only by the intronic enhancer, E mu, but also by a 3' regulatory region located downstream of the C alpha membrane exon. Several DNase I-hypersensitive sites (hs1-4) and enhancer elements (e.g., C alpha3'E) have been identified in this 3' regulatory region, and some of these were suggested to comprise a locus control region. However, little is known about the coordinate regulation or function of these individual elements. Here we provide evidence that C alpha3'E and hs3 are virtually mirror images of each other and demarcate the edges of an approximately 25-kb region of quasi-dyad symmetry with 3'alphaE(hs1,2) at its center. Flanking 3'alphaE(hs1,2) are inverted repeats and families of repetitive sequences uniquely located in this region. We have observed that, like 3'alphaE(hs1,2) and hs3, C alpha3'E is DNase I hypersensitive in plasma cell lines, but not in a pre-B cell line. Additionally, we found that C alpha3'E and hs3 show significant transcriptional synergy in transfection assays only in a plasma cell line. The DNA topology of the 3' regulatory region coupled with new and existing data on the activity of its individual enhancers during B cell differentiation lead us to propose a biphasic model for the activity of this region. According to our model, one unit, consisting of the 3'-most enhancer, hs4, is active early and throughout B cell development. The second unit, which comprises C alpha3'E, 3'alphaE(hs1,2), and hs3, becomes active later in development, when it contributes to such processes as class switching and increased levels of Ig heavy chain gene transcription in plasma cells.

摘要

小鼠免疫球蛋白重链基因座的转录不仅受内含子增强子Eμ的调控,还受位于Cα膜外显子下游的3'调控区的调控。在这个3'调控区已鉴定出几个DNase I高敏位点(hs1 - 4)和增强子元件(如Cα3'E),其中一些被认为构成了一个基因座控制区。然而,对于这些单个元件的协同调控或功能了解甚少。在这里,我们提供证据表明Cα3'E和hs3实际上是彼此的镜像,并划定了一个约25 kb的准二元对称区域的边界,其中心为3'αE(hs1,2)。3'αE(hs1,2)两侧是反向重复序列和仅位于该区域的重复序列家族。我们观察到,与3'αE(hs1,2)和hs3一样,Cα3'E在浆细胞系中对DNase I敏感,但在pre - B细胞系中不敏感。此外,我们发现Cα3'E和hs3仅在浆细胞系的转染实验中显示出显著的转录协同作用。3'调控区的DNA拓扑结构,以及关于其单个增强子在B细胞分化过程中活性的新的和现有数据,使我们提出了该区域活性的双相模型。根据我们的模型,一个由最3'端的增强子hs4组成的单元在整个B细胞发育早期都是活跃的。第二个单元由Cα3'E、3'αE(hs1,2)和hs3组成,在发育后期变得活跃,此时它有助于诸如类别转换和浆细胞中免疫球蛋白重链基因转录水平增加等过程。

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