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核因子κB转录因子可诱导DNA弯曲,这种弯曲由其65-kD亚基调节。

The NF-kappa B transcription factor induces DNA bending which is modulated by its 65-kD subunit.

作者信息

Schreck R, Zorbas H, Winnacker E L, Baeuerle P A

机构信息

Laboratorium für Molekulare Biologie, Ludwig-Maximilians-Universität München, FRG.

出版信息

Nucleic Acids Res. 1990 Nov 25;18(22):6497-502. doi: 10.1093/nar/18.22.6497.

Abstract

This study describes a novel functional property of the eukaryotic transcription factor NF-kappa B in altering the DNA structure. We observed that the binding of purified NF-kappa B to DNA was facilitated by spermine and cations which are known to promote DNA bending, and by a nick in one position at the 3'-end of the binding site. Furthermore, the position of the NF-kappa B binding sequence 5'-GGGACTTTCC-3' (kappa B motif) within circularly permutated DNA fragments had a profound influence on the mobility of NF-kappa B-DNA complexes in a gel retardation assay while the mobility of unbound DNA fragments did not depend on the position of the kappa B motif. The mobility effect was slightly reduced at increased temperature. These observations suggested that binding of NF-kappa B to DNA induces bending. The estimated bending angle induced by the 50-kD DNA binding subunit of NF-kappa B (p50) was smaller than that induced by p50 which was associated with the 65-kD non-DNA binding subunit (p65). Moreover, the presence of p65 appeared to result in a shift of the bending center from the middle towards the 3'-end of the kappa B motif. This shows a role for the p65 subunit of NF-kappa B in modulating the extent and altering the position of protein-induced DNA bending.

摘要

本研究描述了真核转录因子NF-κB在改变DNA结构方面的一种新的功能特性。我们观察到,已知能促进DNA弯曲的精胺和阳离子,以及结合位点3'端一个位置的切口,都有助于纯化的NF-κB与DNA的结合。此外,在凝胶阻滞试验中,环状排列的DNA片段内NF-κB结合序列5'-GGGACTTTCC-3'(κB基序)的位置对NF-κB-DNA复合物的迁移率有深远影响,而未结合的DNA片段的迁移率并不取决于κB基序的位置。在温度升高时,迁移率效应略有降低。这些观察结果表明,NF-κB与DNA的结合会诱导弯曲。由NF-κB的50-kD DNA结合亚基(p50)诱导的估计弯曲角度小于与65-kD非DNA结合亚基(p65)相关的p50诱导的弯曲角度。此外,p65的存在似乎导致弯曲中心从κB基序的中间向3'端移动。这表明NF-κB的p65亚基在调节蛋白质诱导的DNA弯曲程度和改变弯曲位置方面发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9244/332601/b8b986fbf4db/nar00206-0034-a.jpg

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