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G蛋白和ERK激活在血红素诱导K562细胞红系分化中的作用

Role of G proteins and ERK activation in hemin-induced erythroid differentiation of K562 cells.

作者信息

Kucukkaya Bahire, Arslan Devrim Oz, Kan Beki

机构信息

Marmara University School of Medicine, Department of Biophysics, Tibbiye Caddesi No 49, Haydarpasa, 34668, Istanbul, Turkey.

出版信息

Life Sci. 2006 Feb 9;78(11):1217-24. doi: 10.1016/j.lfs.2005.06.041. Epub 2005 Oct 7.

Abstract

Heterotrimeric G proteins which couple extracellular signals to intracellular effectors play a central role in cell growth and differentiation. The pluripotent erythroleukemic cell line K562 that acquires the capability to synthesize hemoglobin in response to a variety of agents can be used as a model system for erythroid differentiation. Using Western blot analysis and RT-PCR, we studied alterations in G protein expression accompanying hemin-induced differentiation of K562 cells. We demonstrated the presence of G(alpha s), G(alpha i2) and G(alpha q) and the absence of G(alpha i1), G(alpha o) and G(alpha 16) in K562 cells. We observed the short form of G(alpha s) to be expressed predominantly in these cells. Treatment of K562 cells with hemin resulted in an increase in the levels of G(alpha s) and G(alpha q). On the other hand, the level of G(alpha i2) was found to increase on the third day after induction with hemin, followed by a decrease to levels lower of those of uninduced cells. The mitogen-activated protein kinase ERK1/2 pathway is crucial in the control of cell proliferation and differentiation. Both Gi- and Gq-coupled receptors stimulate MAPK activation. We therefore examined the phosphorylation of ERK1/2 during hemin-induced differentiation of K562 cells. Using anti-ERK1/2 antibodies, we observed that ERK2 was primarily phosphorylated in K562 cells. ERK2 phosphorylation increased gradually until 48 h and returned to basal values by 96 h following hemin treatment. Our results suggest that changes in G protein expression and ERK2 activity are involved in hemin-induced differentiation of K562 cells.

摘要

异三聚体G蛋白可将细胞外信号与细胞内效应器偶联,在细胞生长和分化中起核心作用。多能红白血病细胞系K562可响应多种因子获得合成血红蛋白的能力,可作为红细胞分化的模型系统。利用蛋白质免疫印迹分析和逆转录聚合酶链反应,我们研究了K562细胞在血红素诱导分化过程中G蛋白表达的变化。我们证实在K562细胞中存在G(αs)、G(αi2)和G(αq),而不存在G(αi1)、G(αo)和G(α16)。我们观察到G(αs)的短形式在这些细胞中主要表达。用血红素处理K562细胞导致G(αs)和G(αq)水平升高。另一方面,发现G(αi2)的水平在血红素诱导后的第三天升高,随后降至低于未诱导细胞的水平。丝裂原活化蛋白激酶ERK1/2途径在细胞增殖和分化的控制中至关重要。Gi和Gq偶联受体均刺激MAPK活化。因此,我们检测了K562细胞在血红素诱导分化过程中ERK1/2的磷酸化情况。使用抗ERK1/2抗体,我们观察到ERK2在K562细胞中主要被磷酸化。ERK2磷酸化在血红素处理后逐渐增加直至48小时,并在96小时后恢复到基础值。我们的结果表明,G蛋白表达和ERK2活性的变化参与了血红素诱导的K562细胞分化。

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