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Runx1/Cbfβ2 复合物在两个发育阶段对淋巴组织诱导细胞的分化是必需的。

Runx1/Cbfβ2 complexes are required for lymphoid tissue inducer cell differentiation at two developmental stages.

机构信息

Laboratory for Transcriptional Regulation, Research Center for Allergy and Immunology, RIKEN, Yokohama 230-0045, Japan.

出版信息

J Immunol. 2011 Feb 1;186(3):1450-7. doi: 10.4049/jimmunol.1000162. Epub 2010 Dec 22.

DOI:10.4049/jimmunol.1000162
PMID:21178013
Abstract

Hematopoietic lymphoid tissue inducer (LTi) cells are essential for the development of secondary lymphoid tissues including lymph nodes and Peyer's patches. Two transcription factors, the helix-loop-helix inhibitor Id2 and the retinoic acid-related orphan receptor γt (Rorγt), have been shown to be crucial for LTi cell development. However, it remains unclear how the specification of multipotent hematopoietic progenitor cells toward the LTi lineage is programmed. In this study, we report impaired lymphoid tissue organogenesis in mice in which the function of Runx1/Cbfβ transcription factor complexes was attenuated by the loss of either the distal promoter-derived Runx1 or Cbfβ2 variant protein. We found that LTi progenitors in fetal liver, defined previously as a lineage marker-negative α4β7 integrin (α4β7)(+) IL-7R α-chain (IL-7Rα)(+) population, can be subdivided into Rorγt-expressing IL-7Rα(high) cells and nonexpressing IL-7Rα(mid) cells. Whereas Id2 and Rorγt are required to direct α4β7(+)IL-7Rα(mid) cells to become α4β7(+)IL-7Rα(high) cells, Runx1/Cbfβ2 complexes are necessary for the emergence of α4β7(+)IL-7Rα(mid) cells. In addition, the loss of Cbfβ2, but not P1-Runx1, resulted in an inefficient upregulation of Rorγt in residual α4β7(+)IL-7Rα(+) LTi cells at anlagen. Our results thus revealed that Runx1/Cbfβ2 complexes regulate the differentiation of LTi cells at two stages: an early specification of hematopoietic progenitors toward the LTi lineage and a subsequent activation of Rorγt expression at anlagen.

摘要

造血淋巴组织诱导(LTi)细胞对于包括淋巴结和派尔氏斑在内的次级淋巴组织的发育至关重要。两个转录因子,螺旋-环-螺旋抑制剂 Id2 和维甲酸相关孤儿受体γt(Rorγt),已被证明对 LTi 细胞的发育至关重要。然而,LTi 细胞谱系多能造血祖细胞的特异性是如何编程的仍不清楚。在这项研究中,我们报告了转录因子 Runx1/Cbfβ 复合物的功能因缺失远位启动子衍生的 Runx1 或 Cbfβ2 变体蛋白而减弱的情况下,小鼠的淋巴组织器官发生受损。我们发现,先前被定义为谱系标记阴性α4β7 整合素(α4β7)(+)IL-7Rα 链(IL-7Rα)(+)群体的胎肝中的 LTi 祖细胞,可以进一步分为表达 Rorγt 的 IL-7Rα(高)细胞和不表达 IL-7Rα(中)细胞。虽然 Id2 和 Rorγt 需要指导α4β7(+)IL-7Rα(中)细胞成为α4β7(+)IL-7Rα(高)细胞,但 Runx1/Cbfβ2 复合物对于α4β7(+)IL-7Rα(中)细胞的出现是必需的。此外,缺失 Cbfβ2,但不是 P1-Runx1,导致在原基中残留的α4β7(+)IL-7Rα(+)LTi 细胞中 Rorγt 的上调效率降低。因此,我们的结果揭示了 Runx1/Cbfβ2 复合物在两个阶段调节 LTi 细胞的分化:造血祖细胞向 LTi 谱系的早期特化和随后在原基中 Rorγt 表达的激活。

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