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nPKC-MAPK信号通路在人髓性白血病K562细胞巨核细胞分化过程中核仁磷酸蛋白/B23减少中的作用

Involvement of nPKC-MAPK pathway in the decrease of nucleophosmin/B23 during megakaryocytic differentiation of human myelogenous leukemia K562 cells.

作者信息

Chou Chih-Chung, Yung Benjamin Yat-Ming, Hsu Chen-Ya

机构信息

Department and Graduate School of Biotechnology, Fooyin University, 151 Chin-Hsueh, Rd., Ta-Liao Hsiang, Kaohsiung Hsien, 831 Taiwan, ROC.

出版信息

Life Sci. 2007 May 8;80(22):2051-9. doi: 10.1016/j.lfs.2007.03.004. Epub 2007 Mar 13.

Abstract

Human myelogenous leukemia K562 cells were induced to undergo megakaryocytic differentiation by long-term treatment with phorbol ester 12-O-tetradecanoyl-phorbol-13-acetate (TPA). The protein level of nucleophosmin/B23 (NPM/B23), a nucleolar protein, was substantially decreased upon TPA treatment. In this study, we found that the proteasome inhibitors blocked the decrease of NPM/B23 protein in response to TPA, suggesting the proteasomes were involved in the downregulation of NPM/B23 upon megakaryocytic differentiation. To investigate the signaling pathway in the downregulation of NPM/B23 during early TPA-induced megakaryocytic differentiation of K562 cells, K562 cells were treated with TPA in the presence of the PKC isozyme-selective inhibitors, GF109203X and Gö 6976, or MEK1 inhibitor, PD98059. The decrease of NPM/B23 protein in the TPA-treated K562 cells was blocked by GF109203X but not by Gö 6976, suggesting the involvement of novel PKCs in the downregulation of NPM/B23 during TPA-induced megakaryocytic differentiation of K562 cells. The application of MEK1 inhibitor PD98059 upon TPA treatment blocked the TPA-induced decrease of NPM/B23 protein and aborted the megakaryocytic differentiation but not to break through the cell growth arrest. Unlike NPM/B23, the degradation of nucleolin in the TPA-treated K562 cells could not be blocked by PD98059 while the TPA-induced megakaryocytic differentiation was abrogated. The decrease of NPM/B23 protein seems to be more correlated with the novel PKC-MAPK-induced megakaryocytic differentiation than another nucleolar protein, nucleolin. Taken together, our results indicated that novel PKC-MAPK pathway was required for the decrease of NPM/B23 during TPA-induced megakaryocytic differentiation.

摘要

用人髓性白血病K562细胞,通过用佛波酯12 - O -十四烷酰佛波醇-13 -乙酸酯(TPA)长期处理,诱导其向巨核细胞分化。核仁蛋白核磷蛋白/B23(NPM/B23)的蛋白质水平在TPA处理后显著降低。在本研究中,我们发现蛋白酶体抑制剂可阻断NPM/B23蛋白因TPA而降低的现象,这表明蛋白酶体参与了巨核细胞分化过程中NPM/B23的下调。为了研究K562细胞在TPA诱导的早期巨核细胞分化过程中NPM/B23下调的信号通路,在存在PKC同工酶选择性抑制剂GF109203X和Gö 6976或MEK1抑制剂PD98059的情况下,用TPA处理K562细胞。GF109203X可阻断TPA处理的K562细胞中NPM/B23蛋白的降低,但Gö 6976则不能,这表明新型PKC参与了K562细胞在TPA诱导的巨核细胞分化过程中NPM/B23的下调。在TPA处理时应用MEK1抑制剂PD98059可阻断TPA诱导的NPM/B23蛋白降低,并中止巨核细胞分化,但不会突破细胞生长停滞。与NPM/B23不同,PD98059不能阻断TPA处理的K562细胞中核仁素的降解,而TPA诱导的巨核细胞分化则被废除。NPM/B23蛋白的降低似乎比另一种核仁蛋白核仁素,与新型PKC - MAPK诱导的巨核细胞分化更相关。综上所述,我们的结果表明,新型PKC - MAPK通路是TPA诱导的巨核细胞分化过程中NPM/B23降低所必需的。

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