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人类T细胞受体δ转基因重排中依赖增强子和不依赖增强子的步骤。

Enhancer-dependent and -independent steps in the rearrangement of a human T cell receptor delta transgene.

作者信息

Lauzurica P, Krangel M S

机构信息

Department of Immunology, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

J Exp Med. 1994 Jan 1;179(1):43-55. doi: 10.1084/jem.179.1.43.

Abstract

The rearrangement and expression of T cell receptor (TCR) gene segments occurs in a highly ordered fashion during thymic ontogeny of T lymphocytes. To study the regulation of gene rearrangement within the TCR alpha/delta locus, we generated transgenic mice that carry a germline human TCR delta minilocus that includes V delta 1, V delta 2, D delta 3, J delta 1, J delta 3, and C delta segments, and either contains or lacks the TCR delta enhancer. We found that the enhancer-positive construct rearranges stepwise, first V to D, and then V-D to J. Construct V-D rearrangement mimics a unique property of the endogenous TCR delta locus. V-D-J rearrangement is T cell specific, but is equivalent in alpha/beta and gamma/delta T lymphocytes. Thus, either there is no commitment to the alpha/beta and gamma/delta T cell lineages before TCR delta gene rearrangement, or if precommitment occurs, it does not operate directly on TCR delta gene cis-acting regulatory elements to control TCR delta gene rearrangement. Enhancer-negative mice display normal V to D rearrangement, but not V-D to J rearrangement. Thus, the V-D to J step is controlled by the enhancer, but the V to D step is controlled by separate elements. The enhancer apparently controls access to J delta 1 but not D delta 3, suggesting that a boundary between two independently regulated domains of the minilocus lies between these elements. Within the endogenous TCR alpha/delta locus, this boundary may represent the 5' end of a chromatin regulatory domain that is opened by the TCR delta enhancer during T cell development. The position of this boundary may explain the unique propensity of the TCR delta locus to undergo early V to D rearrangement. Our results indicate that the TCR delta enhancer performs a crucial targeting function to regulate TCR delta gene rearrangement during T cell development.

摘要

T细胞受体(TCR)基因片段的重排和表达在T淋巴细胞的胸腺发育过程中以高度有序的方式发生。为了研究TCRα/δ基因座内基因重排的调控,我们构建了转基因小鼠,其携带一个种系人类TCRδ微基因座,该微基因座包括Vδ1、Vδ2、Dδ3、Jδ1、Jδ3和Cδ片段,并且含有或缺乏TCRδ增强子。我们发现增强子阳性构建体逐步重排,首先是V到D,然后是V-D到J。构建体V-D重排模拟了内源性TCRδ基因座的独特特性。V-D-J重排具有T细胞特异性,但在α/β和γ/δ T淋巴细胞中是等效的。因此,要么在TCRδ基因重排之前不存在对α/β和γ/δ T细胞谱系的定向,要么如果发生了预先定向,它不会直接作用于TCRδ基因的顺式作用调控元件来控制TCRδ基因重排。增强子阴性小鼠显示正常的V到D重排,但没有V-D到J重排。因此,V-D到J步骤由增强子控制,但V到D步骤由单独的元件控制。增强子显然控制对Jδ1的接近,但不控制对Dδ3的接近,这表明微基因座两个独立调控结构域之间的边界位于这些元件之间。在内源性TCRα/δ基因座内,这个边界可能代表染色质调控结构域的5'端,该结构域在T细胞发育过程中由TCRδ增强子打开。这个边界的位置可能解释了TCRδ基因座早期发生V到D重排的独特倾向。我们的结果表明,TCRδ增强子在T细胞发育过程中执行关键的靶向功能来调控TCRδ基因重排。

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