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CTCF 和黏连蛋白在原钙黏蛋白-α基因表达单细胞多样性产生中的作用。

Role of CCCTC binding factor (CTCF) and cohesin in the generation of single-cell diversity of protocadherin-α gene expression.

机构信息

Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032, USA.

出版信息

Proc Natl Acad Sci U S A. 2012 Jun 5;109(23):9125-30. doi: 10.1073/pnas.1205074109. Epub 2012 May 1.

Abstract

Extraordinary single-cell diversity is generated in the vertebrate nervous system by the combinatorial expression of the clustered protocadherin genes (Pcdhα, -β, and -γ). This diversity is generated by a combination of stochastic promoter choice and alternative pre-mRNA splicing. Here we show that both the insulator-binding protein CTCF and the cohesin complex subunit Rad21 bind to two highly conserved DNA sequences, the first within and the second downstream of transcriptionally active Pcdhα promoters. Both CTCF and Rad21 bind to these sites in vitro and in vivo, this binding directly correlates with alternative isoform expression, and knocking down CTCF expression reduces alternative isoform expression. Remarkably, a similarly spaced pair of CTCF/Rad21 binding sites was identified within a distant enhancer element (HS5-1), which is required for normal levels of alternative isoform expression. We also identify an additional, unique regulatory role for cohesin, as Rad21 binds to another enhancer (HS7) independently of CTCF, and knockdown of Rad21 reduces expression of the constitutive, biallelically expressed Pcdhα isoforms αc1 and αc2. We propose that CTCF and the cohesin complex initiate and maintain Pcdhα promoter choice by mediating interactions between Pcdhα promoters and enhancers.

摘要

脊椎动物神经系统通过聚类原钙黏蛋白基因(Pcdhα、-β 和 -γ)的组合表达产生非凡的单细胞多样性。这种多样性是通过随机启动子选择和选择性前体 mRNA 剪接的组合产生的。在这里,我们表明绝缘子结合蛋白 CTCF 和着丝粒复合物亚基 Rad21 都结合到两个高度保守的 DNA 序列上,第一个位于转录活性 Pcdhα 启动子的内部,第二个位于其下游。CTCF 和 Rad21 都在体外和体内结合到这些位点,这种结合与选择性异构体表达直接相关,敲低 CTCF 表达会降低选择性异构体表达。值得注意的是,在一个遥远的增强子元件(HS5-1)中鉴定出一对具有相似间隔的 CTCF/Rad21 结合位点,这对于正常水平的选择性异构体表达是必需的。我们还发现了着丝粒复合物的另一个独特的调节作用,因为 Rad21 独立于 CTCF 结合到另一个增强子(HS7)上,并且敲低 Rad21 会降低组成型、双等位基因表达的 Pcdhα 异构体 αc1 和 αc2 的表达。我们提出 CTCF 和着丝粒复合物通过介导 Pcdhα 启动子和增强子之间的相互作用来启动和维持 Pcdhα 启动子选择。

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