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JNK 介导线粒体转录因子 p45/NF-E2 在鼠红白血病细胞分化过程中的周转和稳定。

JNK-mediated turnover and stabilization of the transcription factor p45/NF-E2 during differentiation of murine erythroleukemia cells.

机构信息

Institute of Molecular Biology, Academia Sinica, Taipei 115, Taiwan, Republic of China.

出版信息

Proc Natl Acad Sci U S A. 2010 Jan 5;107(1):52-7. doi: 10.1073/pnas.0909153107. Epub 2009 Dec 4.

Abstract

Regulation of the homeostatic concentrations of specific sets of transcription factors is essential for correct programming of cell proliferation and differentiation. We have characterized the signal transduction pathways regulating the catabolisis of p45/NF-E2, a bZIP factor activating the erythroid and megakaryocytic gene transcription. Through use of different approaches including nano-scale proteomics, we show that activated-JNK, or Phospho-JNK (P-JNK), physically interacts with p45/NF-E2 and phosphorylates its Ser157 residue. This reaction leads to the poly-ubiquitination of p45/NF-E2 at one or more of six Lys residues, one of which being also a sumoylation site, and its degradation through the proteasome pathway. Significantly, this regulatory pathway of p45/NF-E2 by P-JNK exists only in uninduced murine erythroleukemia (MEL) cells but not in differentiated MEL cells in which JNK is inactivated on DMSO induction. Based on the above data and analysis of the chromatin-binding kinetics of p45/NF-E2 and the erythroid gene repressor Bach1 during the early phase of MEL differentiation, we suggest a model for the regulation of erythroid maturation. In the model, the posttranslational modifications and turnover of p45/NF-E2, as mediated by P-JNK, contribute to the control of its homeostatic concentration and consequently, its regulatory functions in the progression of erythroid differentiation and erythroid gene expression.

摘要

调节特定转录因子集的内稳态浓度对于正确编程细胞增殖和分化至关重要。我们已经描述了调节 p45/NF-E2 分解的信号转导途径,p45/NF-E2 是一种激活红系和巨核细胞基因转录的 bZIP 因子。通过使用包括纳米级蛋白质组学在内的不同方法,我们表明激活的-JNK 或磷酸化-JNK(P-JNK)与 p45/NF-E2 物理相互作用,并磷酸化其 Ser157 残基。该反应导致 p45/NF-E2 在一个或多个六个赖氨酸残基上发生多泛素化,其中一个赖氨酸残基也是一个 SUMO 化位点,并通过蛋白酶体途径降解。重要的是,这种 P-JNK 对 p45/NF-E2 的调节途径仅存在于未诱导的小鼠红白血病(MEL)细胞中,而不存在于 JNK 在 DMSO 诱导下失活的分化 MEL 细胞中。基于上述数据和对 MEL 分化早期 p45/NF-E2 和红系基因抑制因子 Bach1 的染色质结合动力学的分析,我们提出了一个红系成熟调控的模型。在该模型中,P-JNK 介导的 p45/NF-E2 的翻译后修饰和周转率有助于控制其内稳态浓度,从而控制其在红系分化和红系基因表达进展中的调节功能。

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