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B细胞身份的建立与维持。

Establishment and maintenance of B cell identity.

作者信息

Grosschedl Rudolf

机构信息

Department of Cellular and Molecular Immunology, Max Planck Institute of Immunobiology and Epigenetics, D-79108 Freiburg, Germany

出版信息

Cold Spring Harb Symp Quant Biol. 2013;78:23-30. doi: 10.1101/sqb.2013.78.020057. Epub 2014 Apr 14.

Abstract

B lymphocyte differentiation is dependent on an intricate interplay of transcription factors and signaling pathways to establish a lineage-specific program of gene expression. Functional perturbations of several transcription factors by gain- or loss-of-function experiments indicated that E2A, EBF1, and FoxO1 are required for the specification of the B cell lineage, whereas Pax5 antagonizes alternative cell fates by repressing genes that allow for responsiveness to T lymphoid- and myeloid-promoting signals. However, genome-wide analysis of EBF1-binding sites and their functional interrogation indicated that EBF1 is involved in both activation of the B cell program and repression of alternative cell fates. Recent studies indicate that EBF1 function is required throughout the B cell lineage until the onset of plasma cell differentiation and includes a role in the maintenance of B cell identity. Thus, early B cell differentiation requires intertwined networks of transcription factors in which EBF1 collaborates with E2A and FoxO1 to activate the B lineage program and acts together with Pax5 to antagonize alternative cell fates.

摘要

B淋巴细胞分化依赖于转录因子和信号通路之间复杂的相互作用,以建立谱系特异性的基因表达程序。通过功能获得或功能缺失实验对几种转录因子进行功能扰动表明,E2A、EBF1和FoxO1是B细胞谱系特化所必需的,而Pax5通过抑制那些允许对T淋巴细胞和髓系促进信号产生反应的基因来拮抗其他细胞命运。然而,对EBF1结合位点的全基因组分析及其功能研究表明,EBF1既参与B细胞程序的激活,也参与对其他细胞命运的抑制。最近的研究表明,在整个B细胞谱系中直至浆细胞分化开始都需要EBF1发挥功能,并且其在维持B细胞特性方面也发挥作用。因此,早期B细胞分化需要相互交织的转录因子网络,其中EBF1与E2A和FoxO1协作激活B谱系程序,并与Pax5共同作用拮抗其他细胞命运。

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