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确定负责由δMax和Max对Myc功能进行差异调节的序列。

Determination of sequences responsible for the differential regulation of Myc function by delta Max and Max.

作者信息

Västrik I, Mäkelä T P, Koskinen P J, Alitalo K

机构信息

Molecular/Cancer Biology Laboratory, Haartman Institute, University of Helsinki, Finland.

出版信息

Oncogene. 1995 Aug 3;11(3):553-60.

PMID:7630640
Abstract

The DNA-binding, transcriptional activation and transforming activities of the Myc protein require dimerization with Max. Max can form also homodimers which are able to bind the same DNA sequence as Myc/Max heterodimers and suppress Myc-induced transcription and transformation. We have recently identified a naturally occurring truncated form of Max, delta Max, which in a rat embryo fibroblast enhances transformation by Myc and Ras. Like Max, this delta Max protein contains a b-HLH-Zip domain, except that the end of the leucine zipper is replaced by five delta Max-specific amino acid residues. Delta Max also lacks the C-terminal sequences of Max including a nuclear localisation signal. Here we have dissected the regions responsible for the specific effects of Max and delta Max in Ras-Myc cotransformation of rat embryo fibroblasts. Our results indicate that the suppressive activity of Max requires C-terminal acidic and basic regions and an intact leucine zipper. Replacement of the end of the leucine zipper with the delta Max-specific sequence is responsible for the enhancement of transformation by delta Max. Surprisingly, delta Max does not require the DNA-binding basic region for enhancement of transformation and has no effect on Myc-induced transcription activation from Myc/Max-binding site-containing promoter construct.

摘要

Myc蛋白的DNA结合、转录激活和转化活性需要与Max形成二聚体。Max也能形成同二聚体,其能结合与Myc/Max异二聚体相同的DNA序列,并抑制Myc诱导的转录和转化。我们最近鉴定出一种天然存在的截短形式的Max,即δMax,其在大鼠胚胎成纤维细胞中可增强Myc和Ras诱导的转化。与Max一样,这种δMax蛋白含有一个b-HLH-Zip结构域,只是亮氨酸拉链的末端被五个δMax特异性氨基酸残基所取代。δMax还缺少Max的C末端序列,包括一个核定位信号。在此,我们剖析了在大鼠胚胎成纤维细胞的Ras-Myc共转化中负责Max和δMax特异性作用的区域。我们的结果表明,Max的抑制活性需要C末端酸性和碱性区域以及完整的亮氨酸拉链。用δMax特异性序列取代亮氨酸拉链的末端导致了δMax对转化的增强作用。令人惊讶的是,δMax增强转化不需要DNA结合碱性区域,并且对含Myc/Max结合位点的启动子构建体的Myc诱导的转录激活没有影响。

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