首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Biological Effects of C/EBPα in K562 Cells Depend on the Potency of the N-terminal Regulatory Region Not on Specificity of the DNA Binding Domain
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The Biological Effects of C/EBPα in K562 Cells Depend on the Potency of the N-terminal Regulatory Region Not on Specificity of the DNA Binding Domain

机译:C /EBPα在K562细胞中的生物学效应取决于N末端调控区的效力而不取决于DNA结合域的特异性

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摘要

The transcription factor C/EBPα is more potent than C/EBPβ in inducing granulocitic differentiation and inhibiting BCR/ABL-expressing cells. We took a “domain swapping” approach to assess biological effects, modulation of gene expression, and binding to C/EBPα-regulated promoters by wild-type and chimeric C/EBPα/C/EBPβ proteins. Wild-type and N-C/EBPα+ C/EBPβ-DBD induced transcription of the granulocyte-colony stimulating factor receptor (G-CSFR) gene, promoted differentiation, and suppressed proliferation of K562 cells vigorously; instead, wild-type C/EBPβ and N-C/EBPβ+C/EBPα-DBD had modest effects, although they bound the G-CSFR promoter like wild-type C/EBPα and N-C/EBPα+C/EBPβ-DBD. Chimeric proteins consisting of the TAD of VP16 and the DBD of C/EBPα or C/EBPβ inhibited proliferation and induced differentiation of K562 cells as effectively as wild-type C/EBPα. Gene expression profiles induced by C/EBPα resembled those modulated by N-C/EBPα+C/EBPβ-DBD, whereas C/EBPβ induced a pattern similar to that of N-C/EBPβ+C/EBPα-DBD. C/EBPα activation induced changes in the expression of more cell cycle- and apoptosis-related genes than the other proteins and enhanced Imatinib-induced apoptosis of K562 cells. Expression of FOXO3a, a novel C/EBPα-regulated gene, was required for apoptosis but not for differentiation induction or proliferation inhibition of K562 cells.
机译:转录因子C /EBPα在诱导粒细胞分化和抑制BCR / ABL表达细胞方面比C /EBPβ更有效。我们采用“结构域交换”方法评估了野生型和嵌合C /EBPα/ C /EBPβ蛋白的生物学效应,基因表达的调控以及与C /EBPα调控的启动子的结合。野生型和N-C /EBPα+ C /EBPβ-DBD诱导了粒细胞集落刺激因子受体(G-CSFR)基因的转录,促进了分化,并强烈抑制了K562细胞的增殖。相反,野生型C /EBPβ和N-C /EBPβ+ C /EBPα-DBD具有适度的作用,尽管它们像野生型C /EBPα和N-C /EBPα+ C /EBPβ-DBD一样结合了G-CSFR启动子。由VP16的TAD和C /EBPα或C /EBPβ的DBD组成的嵌合蛋白与野生型C /EBPα一样有效地抑制K562细胞的增殖并诱导其分化。 C /EBPα诱导的基因表达谱与N-C /EBPα+ C /EBPβ-DBD调控的基因表达谱相似,而C /EBPβ诱导的模式类似于N-C /EBPβ+ C /EBPα-DBD的模式。与其他蛋白质相比,C /EBPα激活可诱导更多细胞周期和凋亡相关基因的表达变化,并增强伊马替尼诱导的K562细胞凋亡。 FOXO3a(一种新型的C /EBPα调控基因)的表达对于细胞凋亡是必需的,但对于K562细胞的分化诱导或增殖抑制则不是。

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