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转录激活中的HMG蛋白与DNA灵活性

HMG proteins and DNA flexibility in transcription activation.

作者信息

Ross E D, Hardwidge P R, Maher L J

机构信息

Department of Biochemistry and Molecular Biology, Mayo Foundation, Rochester, Minnesota 55905, USA.

出版信息

Mol Cell Biol. 2001 Oct;21(19):6598-605. doi: 10.1128/MCB.21.19.6598-6605.2001.

Abstract

The relative stiffness of naked DNA is evident from measured values of longitudinal persistence length (approximately 150 bp) and torsional persistence length (approximately 180 bp). These parameters predict that certain arrangements of eukaryotic transcription activator proteins in gene promoters should be much more effective than others in fostering protein-protein interactions with the basal RNA polymerase II transcription apparatus. Thus, if such interactions require some kind of DNA looping, DNA loop energies should depend sensitively on helical phasing of protein binding sites, loop size, and intrinsic DNA curvature within the loop. Using families of artificial transcription templates where these parameters were varied, we were surprised to find that the degree of transcription activation by arrays of Gal4-VP1 transcription activators in HeLa cell nuclear extract was sensitive only to the linear distance separating a basal promoter from an array of bound activators on DNA templates. We now examine the hypothesis that this unexpected result is due to factors in the extract that act to enhance apparent DNA flexibility. We demonstrate that HeLa cell nuclear extract is rich in a heat-resistant activity that dramatically enhances apparent DNA longitudinal and torsional flexibility. Recombinant mammalian high-mobility group 2 (HMG-2) protein can substitute for this activity. We propose that the abundance of HMG proteins in eukaryotic nuclei provides an environment in which DNA is made sufficiently flexible to remove many constraints on protein binding site arrangements that would otherwise limit efficient transcription activation to certain promoter geometries.

摘要

裸露DNA的相对刚性从纵向持久长度(约150个碱基对)和扭转持久长度(约180个碱基对)的测量值中可见一斑。这些参数预示,真核转录激活蛋白在基因启动子中的某些排列方式,相比于其他方式,在促进与基础RNA聚合酶II转录装置的蛋白质-蛋白质相互作用方面应该更有效。因此,如果这种相互作用需要某种DNA环化,那么DNA环化能量应该敏感地取决于蛋白质结合位点的螺旋相位、环的大小以及环内的固有DNA曲率。通过使用这些参数可变的人工转录模板家族,我们惊讶地发现,在HeLa细胞核提取物中,Gal4-VP1转录激活因子阵列的转录激活程度仅对DNA模板上基础启动子与结合的激活因子阵列之间的线性距离敏感。我们现在检验这样一个假说,即这个意外结果是由于提取物中能够增强表观DNA柔韧性的因素导致的。我们证明,HeLa细胞核提取物富含一种耐热活性,它能显著增强表观DNA的纵向和扭转柔韧性。重组哺乳动物高迁移率族2(HMG-2)蛋白可以替代这种活性。我们提出,真核细胞核中HMG蛋白的丰富性提供了一种环境,在这种环境中DNA具有足够的柔韧性,从而消除了对蛋白质结合位点排列的许多限制,否则这些限制会将有效的转录激活局限于某些启动子几何结构。

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HMG proteins and DNA flexibility in transcription activation.转录激活中的HMG蛋白与DNA灵活性
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本文引用的文献

1
DNA constraints on transcription activation in vitro.体外转录激活的DNA限制因素
J Mol Biol. 2000 Mar 24;297(2):321-34. doi: 10.1006/jmbi.2000.3562.
4
Transcriptional activation by recruitment.通过募集实现转录激活
Nature. 1997 Apr 10;386(6625):569-77. doi: 10.1038/386569a0.
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Action at a distance: DNA-looping and initiation of transcription.远距离作用:DNA 环化与转录起始
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