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B-Myb对基因转录的影响:磷酸化依赖性活性及p300介导的乙酰化作用。

Effects of B-Myb on gene transcription: phosphorylation-dependent activity ans acetylation by p300.

作者信息

Johnson Lance R, Johnson Teresa K, Desler Michelle, Luster Troy A, Nowling Tamara, Lewis Robert E, Rizzino Angie

机构信息

Eppley Institute for Research in Cancer and Allied Diseases, Department of Pathology University of Nebraska Medical Center, Omaha, Nebraska 68198-6805, USA.

出版信息

J Biol Chem. 2002 Feb 8;277(6):4088-97. doi: 10.1074/jbc.M105112200. Epub 2001 Dec 3.

DOI:10.1074/jbc.M105112200
PMID:11733503
Abstract

The transcription factor B-Myb is a cell-cycle regulated phosphoprotein involved in cell cycle progression through the transcriptional regulation of many genes. In this study, we show that the promoter of the fibroblast growth factor-4 (FGF-4) gene is strongly activated by B-Myb in HeLa cells and it can serve as a novel diagnostic tool for assessing B-Myb activity. Specifically, B-Myb deletion mutants were examined and domains of B-Myb required for activation of the FGF-4 promoter were identified. Using phosphorylation-deficient mutant forms of B-Myb, we also show that phosphorylation is essential for B-Myb activity. Moreover, a mutant form of B-Myb, which lacks all identified phosphorylation sites and which has little activity, can function as a dominant-negative and suppress wild-type B-Myb activity. Acetylation is another post-translational modification known to affect the activity of other Myb family members. We show that B-Myb is acetylated by the co-activator p300. We also show that the bromo and histone acetyltransferase domains of p300 are sufficient to interact with and acetylate B-Myb. These data indicate that phosphorylation of B-Myb is an essential modification for activity and that acetylation of B-Myb may play a role in B-Myb activity.

摘要

转录因子B-Myb是一种细胞周期调控的磷蛋白,通过对许多基因的转录调控参与细胞周期进程。在本研究中,我们发现成纤维细胞生长因子4(FGF-4)基因的启动子在HeLa细胞中被B-Myb强烈激活,它可作为评估B-Myb活性的一种新型诊断工具。具体而言,我们检测了B-Myb缺失突变体,并确定了激活FGF-4启动子所需的B-Myb结构域。利用B-Myb的磷酸化缺陷突变体形式,我们还表明磷酸化对于B-Myb活性至关重要。此外,一种缺乏所有已确定磷酸化位点且活性很低的B-Myb突变体形式可作为显性负性突变体发挥作用,并抑制野生型B-Myb的活性。乙酰化是另一种已知会影响其他Myb家族成员活性的翻译后修饰。我们发现B-Myb被共激活因子p300乙酰化。我们还表明,p300的溴结构域和组蛋白乙酰转移酶结构域足以与B-Myb相互作用并使其乙酰化。这些数据表明,B-Myb的磷酸化是其活性的必需修饰,并且B-Myb的乙酰化可能在B-Myb活性中发挥作用。

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Effects of B-Myb on gene transcription: phosphorylation-dependent activity ans acetylation by p300.B-Myb对基因转录的影响:磷酸化依赖性活性及p300介导的乙酰化作用。
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