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首页> 外文期刊>The journal of immunology >Functional Domains of Runx1 Are Differentially Required for CD4 Repression, TCRβ Expression, and CD4/8 Double-Negative to CD4/8 Double-Positive Transition in Thymocyte Development
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Functional Domains of Runx1 Are Differentially Required for CD4 Repression, TCRβ Expression, and CD4/8 Double-Negative to CD4/8 Double-Positive Transition in Thymocyte Development

机译:Runx1的功能域是胸腺细胞发育中CD4抑制,TCRβ表达和CD4 / 8双负向CD4 / 8双正向转变的差异性要求。

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Runx1 (AML1) has multiple functions in thymocyte development, including CD4 repression in immature thymocytes, expression of TCRβ, and efficient β-selection. To determine the functional domains of Runx1 important for thymocyte development, we cultured Runx1-deficient murine fetal liver (FL) cells on OP9-Delta-like 1 murine stromal cells, which express Delta-like 1 and support thymocyte development in vitro, and introduced Runx1 or C-terminal-deletion mutants of Runx1 into the FL cells by retrovirus infection. In this system, Runx1-deficient FL cells failed to follow normal thymocyte development, whereas the introduction of Runx1 into the cells was sufficient to produce thymocyte development that was indistinguishable from that in wild-type FL cells. In contrast, Runx1 mutants that lacked the activation domain necessary for initiating gene transcription did not fully restore thymocyte differentiation, in that it neither repressed CD4 expression nor promoted the CD4/8 double-negative to CD4/8 double-positive transition. Although the C-terminal VWRPY motif-deficient mutant of Runx1, which cannot interact with the transcriptional corepressor Transducin-like enhancer of split (TLE), promoted the double-negative to double-positive transition, it did not efficiently repress CD4 expression. These results suggest that the activation domain is essential for Runx1 to establish thymocyte development and that Runx1 has both TLE-dependent and TLE-independent functions in thymocyte development.
机译:Runx1(AML1)在胸腺细胞发育中具有多种功能,包括未成熟胸腺细胞中的CD4抑制,TCRβ的表达以及有效的β选择。为了确定对胸腺细胞发育重要的Runx1的功能域,我们在OP9-Delta样1鼠基质细胞上培养了Runx1缺陷型鼠胎肝(FL)细胞,该细胞表达Delta样1并在体外支持胸腺细胞的发育,并介绍了通过逆转录病毒感染将Runx1的Runx1或C末端缺失突变体导入FL细胞。在该系统中,缺乏Runx1的FL细胞不能跟随正常的胸腺细胞发育,而将Runx1引入细胞中足以产生与野生型FL细胞无法区分的胸腺细胞发育。相比之下,缺少启动基因转录所必需的激活域的Runx1突变体不能完全恢复胸腺细胞分化,因为它既不抑制CD4表达也不促进CD4 / 8双负向CD4 / 8双正向转变。尽管Runx1的C端VWRPY基序缺陷突变体不能与转录共表达体类似分裂的转导子增强子(TLE)相互作用,但促进了从双负到双正的转变,但它不能有效地抑制CD4表达。这些结果表明,激活域对于Runx1建立胸腺细胞发育必不可少,并且Runx1在胸腺细胞发育中具有TLE依赖性和TLE依赖性功能。

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