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Id3基因在造血细胞中的淋巴细胞特异性表达。与Id3诱导的红白血病细胞分化相关的E2A碱性螺旋-环-螺旋蛋白的选择性拮抗作用。

Lymphoid-specific expression of the Id3 gene in hematopoietic cells. Selective antagonism of E2A basic helix-loop-helix protein associated with Id3-induced differentiation of erythroleukemia cells.

作者信息

Deed R W, Jasiok M, Norton J D

机构信息

CRC Department of Gene Regulation, Paterson Institute for Cancer Research, Christie Hospital NHS Trust, Wilmslow Road, Manchester M20 9BX, United Kingdom.

出版信息

J Biol Chem. 1998 Apr 3;273(14):8278-86. doi: 10.1074/jbc.273.14.8278.

Abstract

Accumulating evidence implicates functions of the Id family of helix-loop-helix proteins in the regulation of cell growth and differentiation in metazoa. Within the mammalian hematopoietic organ, expression of the Id3 gene is restricted to the lymphoid cell compartment. We show here that in non-lymphoid hematopoietic cells, repression of transcription is correlated with hypermethylation of sequences in the vicinity of the upstream regulatory region of the Id3 gene, suggestive of a strict developmental control of expression of this gene in lymphoid versus non-lymphoid hematopoietic cells. Enforced ectopic expression of Id3 in K562 erythroid progenitor cells promotes erythroid differentiation and is correlated with a quantitative/qualitative shift in the profile of interacting TAL1 and E protein heterodimers that bind to a consensus E box sequence in in vitro band shift assays, consistent with selective targeting of E2A E protein(s) by Id3 and suggesting a possible mechanism involving TAL1-mediated differentiation. By using a Gal 4-VP16 two-hybrid competition assay and an E box-dependent reporter assay, we demonstrate directly that the E2A protein E47 preferentially associates with Id3 in vivo. These observations provide a paradigm for understanding how overlapping but distinct specificities of individual Id proteins may constitute a developmentally regulated program underlying cell determination in diverse lineages.

摘要

越来越多的证据表明,螺旋-环-螺旋蛋白Id家族在后生动物细胞生长和分化的调控中发挥作用。在哺乳动物造血器官中,Id3基因的表达仅限于淋巴细胞区室。我们在此表明,在非淋巴细胞造血细胞中,转录抑制与Id3基因上游调控区附近序列的高甲基化相关,这表明该基因在淋巴细胞与非淋巴细胞造血细胞中的表达受到严格的发育控制。在K562红系祖细胞中强制异位表达Id3可促进红系分化,并与体外凝胶迁移实验中与共有E盒序列结合的相互作用TAL1和E蛋白异二聚体谱的定量/定性变化相关,这与Id3对E2A E蛋白的选择性靶向一致,并提示了一种涉及TAL1介导分化的可能机制。通过使用Gal 4-VP16双杂交竞争实验和E盒依赖性报告基因实验,我们直接证明E2A蛋白E47在体内优先与Id3结合。这些观察结果为理解单个Id蛋白重叠但不同的特异性如何构成不同谱系中细胞决定的发育调控程序提供了一个范例。

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