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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Binding of FoxM1 to G2/M gene promoters is dependent upon B-Myb
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Binding of FoxM1 to G2/M gene promoters is dependent upon B-Myb

机译:FoxM1与G2 / M基因启动子的结合取决于B-Myb

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The promoters of genes which regulate entry into and progress through mitosis are typically induced maximally in G2 by transcription factors that include B-Myb and FoxM1. As FoxM1 gene transcription is a target of B-Myb, we investigated in this study how these transcription factors functionally interact to regulate these G2/M genes. Using a 3T3 cell line containing floxed B-myb alleles (B-myb F/F) that could be conditionally deleted by Cre recombinase, we confirmed that B-myb knockout caused both decreased mRNA expression of several G2/M genes, including FoxM1, and delayed entry into mitosis. Although FoxM1 protein expression was actually unaffected by B-myb knockout when quiescent B-myb F/F 3T3 cells re-entered the cell cycle upon serum-stimulation, chromatin immunoprecipitation revealed that FoxM1 binding to G2/M promoters was substantially reduced. FoxM1 transcriptional activity requires sequential phosphorylation by Cyclin-dependent kinases and Plk1, which are B-Myb target genes, and we found that phosphorylation at Plk1-specific sites was somewhat reduced upon B-myb knockout. Neither this effect nor nuclear accumulation of FoxM1, which was unaffected by B-myb knockout, was sufficient to account for the dependence on B-Myb for FoxM1 promoter binding, however. More significantly, assays using paired Birc5 (survivin) promoter-luciferase reporters with either wild-type or mutated Myb binding sites showed that FoxM1 was unable to bind and activate the promoter in the absence of B-Myb binding. Our data suggest that B-Myb is required as a pioneer factor to enable FoxM1 binding to G2/M gene promoters and explains how these transcription factors may collaborate to induce mitosis.
机译:通常,由B-Myb和FoxM1等转录因子在G2中最大程度地诱导调节进入有丝分裂并通过有丝分裂进行的基因的启动子。由于FoxM1基因转录是B-Myb的靶标,因此我们在本研究中研究了这些转录因子在功能上如何相互作用以调节这些G2 / M基因。使用含有可被Cre重组酶有条件删除的F-F的B-myb等位基因(B-myb F / F)的3T3细胞系,我们证实B-myb敲除会导致两个G2 / M基因(包括FoxM1)的mRNA表达下降,并延迟进入有丝分裂。尽管当静止的B-myb F / F 3T3细胞在血清刺激下重新进入细胞周期时,FoxM1蛋白的表达实际上不受B-myb敲除的影响,但染色质免疫沉淀显示FoxM1与G2 / M启动子的结合已大大减少。 FoxM1转录活性需要B-Myb靶基因的细胞周期蛋白依赖性激酶和Plk1进行顺序磷酸化,我们发现在敲除B-myb后,Plk1特异性位点的磷酸化程度有所降低。然而,这种效应或不受B-myb敲除影响的FoxM1的核积累都不足以说明FoxM1启动子结合对B-Myb的依赖性。更重要的是,使用具有野生型或突变Myb结合位点的成对Birc5(survivin)启动子-荧光素酶报告基因进行的测定表明,在缺乏B-Myb结合的情况下,FoxM1无法结合和激活启动子。我们的数据表明B-Myb是使FoxM1与G2 / M基因启动子结合的先驱因子,并解释了这些转录因子如何协同诱导有丝分裂。

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