首页> 外文期刊>Biological chemistry >DNA binding of Myc/Max/Mad network complexes to oligonucleotides containing two E box elements: c-Myc/Max heterodimers do not bind DNA cooperatively.
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DNA binding of Myc/Max/Mad network complexes to oligonucleotides containing two E box elements: c-Myc/Max heterodimers do not bind DNA cooperatively.

机译:Myc / Max / Mad网络复合物与包含两个E盒元件的寡核苷酸的DNA结合:c-Myc / Max异二聚体不能协同结合DNA。

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摘要

Myc proteins function in heterodimeric complexes with Max proteins as transcriptional regulators at least in part by binding to E box sequences with a 5'-CACGTG core. Since such E boxes are found frequently in the human genome and since other proteins besides Myc/Max can bind to similar or identical sequences it is unclear how the specificity of E box-mediated gene transcription is determined. Recent findings were interpreted to suggest that Myc/Max, but not Max/Max or USF complexes, bind cooperatively to DNA sequences that contain two E box elements. This provides a potential mechanism for selective E box-mediated gene transcription. To extend this finding we analyzed DNA binding of c-Myc/Max complexes using a transient COS-7 expression system. In both competition and titration experiments no cooperative binding of c-Myc/Max heterodimers to probes with two E boxes was observed. Furthermore, c-Myc-specific transcription of reporter gene constructs did not reveal cooperativity. Thus ourfindings argue against cooperative DNA binding of Myc proteins as a selection mechanism for E box-dependent transcription.
机译:Myc蛋白在Max二聚体的异二聚体复合物中发挥功能,至少部分通过与具有5'-CACGTG核心的E box序列结合而发挥作用。由于这种E盒在人类基因组中经常发现,并且由于Myc / Max以外的其他蛋白质可以结合相似或相同的序列,因此尚不清楚如何确定E盒介导的基因转录的特异性。最近的发现被解释为暗示Myc / Max,而不是Max / Max或USF复合物,与包含两个E框元件的DNA序列协同结合。这提供了选择性E盒介导的基因转录的潜在机制。为了扩展此发现,我们使用瞬时COS-7表达系统分析了c-Myc / Max复合物的DNA结合。在竞争和滴定实验中,均未观察到c-Myc / Max异二聚体与带有两个E盒的探针的协同结合。此外,报告基因构建体的c-Myc特异性转录没有揭示协同作用。因此,我们的发现反对Myc蛋白的协同DNA结合作为E盒依赖性转录的选择机制。

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