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v-Myb转录激活结构域的突变分析

Mutational analysis of the transcriptional activation domains of v-Myb.

作者信息

Wang Duen-Mei, Lipsick Joseph S

机构信息

Department of Pathology, Stanford University School of Medicine, Stanford, California, CA 94305-5324, USA.

出版信息

Oncogene. 2002 Feb 28;21(10):1611-5. doi: 10.1038/sj.onc.1205236.

Abstract

A minimal transcription activation domain of the v-Myb oncoprotein was initially mapped to a central cluster of charged residues using GAL4-Myb fusion proteins. This region has been proposed to interact directly with the CBP co-activator in animal cells. Regions flanking this central domain of v-Myb are required for transcriptional activation by the native, unfused protein in both mammalian cells and in budding yeast. To identify the critical residues for transcriptional activation, we have now subjected the minimal activation domain and flanking regions including the heptad leucine repeat to random PCR-mediated mutagenesis. We found that the entire region examined can endure extensive substitutions without affecting transcriptional activation by v-Myb in budding yeast. The few mutations that did affect transcriptional activation altered acidic residues within the minimal activation domain or the heptad leucine repeat region, rather than leucine residues. Remarkably, there was a strong concordance between transcriptional activation in animal cells and in budding yeast, even though budding yeast have no known homologue of CBP or related co-activators. In contrast, there was not a strong correlation between transcriptional activation and oncogenic transformation.

摘要

v-Myb癌蛋白的最小转录激活结构域最初是利用GAL4-Myb融合蛋白定位到一个带电荷残基的中央簇上。有人提出该区域可在动物细胞中直接与CBP共激活因子相互作用。v-Myb这个中央结构域两侧的区域对于哺乳动物细胞和芽殖酵母中天然的、未融合的蛋白进行转录激活是必需的。为了鉴定转录激活的关键残基,我们现在对最小激活结构域及其侧翼区域(包括七肽亮氨酸重复序列)进行了随机PCR介导的诱变。我们发现,所检测的整个区域能够耐受广泛的替换,而不会影响v-Myb在芽殖酵母中的转录激活。少数确实影响转录激活的突变改变了最小激活结构域或七肽亮氨酸重复序列区域内的酸性残基,而非亮氨酸残基。值得注意的是,尽管芽殖酵母没有已知的CBP或相关共激活因子的同源物,但动物细胞和芽殖酵母中的转录激活之间仍存在很强的一致性。相比之下,转录激活与致癌转化之间没有很强的相关性。

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