Architecture of a lymphomyeloid developmental switch controlled by PU.1, Notch and Gata3

被引:74
作者
Del Real, Marissa Morales [1 ]
Rothenberg, Ellen V. [1 ]
机构
[1] CALTECH, Div Biol 156 29, Pasadena, CA 91125 USA
来源
DEVELOPMENT | 2013年 / 140卷 / 06期
基金
美国国家卫生研究院;
关键词
Gene regulatory network; Lineage decision; Myb; Quantitative gene expression analysis; T-cell development; Sfpi1; Mouse; T-CELL DEVELOPMENT; LINEAGE COMMITMENT; TARGET GENE; TRANSCRIPTION; EXPRESSION; SPECIFICATION; PROGENITORS; ROLES;
D O I
10.1242/dev.088559
中图分类号
Q [生物科学];
学科分类号
090105 [作物生产系统与生态工程];
摘要
Hematopoiesis is a classic system with which to study developmental potentials and to investigate gene regulatory networks that control choices among alternate lineages. T-cell progenitors seeding the thymus retain several lineage potentials. The transcription factor PU.1 is involved in the decision to become a T cell or a myeloid cell, and the developmental outcome of expressing PU.1 is dependent on exposure to Notch signaling. PU.1-expressing T-cell progenitors without Notch signaling often adopt a myeloid program, whereas those exposed to Notch signals remain in a T-lineage pathway. Here, we show that Notch signaling does not alter PU.1 transcriptional activity by degradation/alteration of PU.1 protein. Instead, Notch signaling protects against the downregulation of T-cell factors so that a T-cell transcriptional network is maintained. Using an early T-cell line, we describe two branches of this network. The first involves inhibition of E-proteins by PU.1 and the resulting inhibition of Notch signaling target genes. Effects of E-protein inhibition can be reversed by exposure to Notch signaling. The second network is dependent on the ability of PU.1 to inhibit important T-cell transcription factor genes such as Myb, Tcf7 and Gata3 in the absence of Notch signaling. We show that maintenance of Gata3 protein levels by Myb and Notch signaling is linked to the ability to retain T-cell identity in response to PU.1.
引用
收藏
页码:1207 / 1219
页数:13
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