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Bcr-Abl-mediated Raf kinase inhibitor protein suppression promotes chronic myeloid leukemia progenitor cells proliferation

机译:Bcr-Abl介导的Raf激酶抑制剂蛋白抑制促进慢性粒细胞白血病祖细胞增殖

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The Ras/Raf-1/MEK/ERK pathway is constitutively activated in Bcr-Abl transformed cells, and Ras activity enhances the oncogenic ability of Bcr-Abl. On the hand, Raf kinase inhibitor protein (RKIP) inhibits activation of MEK by Raf-1 and its downstream signal transduction, resulting in blocking the MAP kinase pathway. Moreover, Raf-1 has been reported to regulate cell cycle progression. However, the mechanism by which Bcr-Abl promotes the cell cycle progression through Raf-1 is not completely understood. In the present study, we found that the expression of RKIP was suppressed in CML cells, and investigated the interaction between RKIP and Bcr-Abl in CML cells. In aldehyde dehydrogenase (ALDH)hi/CD34+ cells derived from CML patients, the inhibition of Bcr-Abl induced RKIP expression and reduced the phosphorylated-FOXM1 (pFOXM1) status, resulting in inhibited colony formation of Bcr-Abl+ progenitor cells. Moreover, overexpression of RKIP significantly decreased the colony numbers, reduced the pFOXM1 status, and reduced pFOXM-1 target genes such as Skp2, Cdc25B and KIS, and induced the expression of p27Kip1a and p21Cip1. Thus, Bcr-Abl represses the expression of RKIP, and continuously activates FOXM1, resulting in the proliferation of CML progenitor cells through the cell cycle modulation.
机译:Ras / Raf-1 / MEK / ERK途径在Bcr-Abl转化细胞中被组成性激活,并且Ras活性增强了Bcr-Abl的致癌能力。另一方面,Raf激酶抑制剂蛋白(RKIP)抑制Raf-1激活MEK及其下游信号转导,从而阻断MAP激酶途径。此外,据报道Raf-1调节细胞周期进程。但是,Bcr-Abl通过Raf-1促进细胞周期进程的机制尚未完全了解。在本研究中,我们发现RKIP在CML细胞中的表达受到抑制,并研究了RKIP与Bcr-Abl在CML细胞中的相互作用。在源自CML患者的醛脱氢酶(ALDH)hi / CD34 +细胞中,抑制Bcr-Abl诱导RKIP表达并降低磷酸化-FOXM1(pFOXM1)状态,从而抑制了Bcr-Abl +祖细胞的集落形成。此外,RKIP的过表达显着降低了菌落数,降低了pFOXM1的状态,并减少了pFOXM-1靶基因(如Skp2,Cdc25B和KIS),并诱导了p27Kip1a和p21Cip1的表达。因此,Bcr-Abl抑制RKIP的表达,并连续激活FOXM1,从而通过细胞周期调节导致CML祖细胞增殖。

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