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CBFβ通过动态构象平衡对Runx1 Runt结构域进行变构调节。

CBFbeta allosterically regulates the Runx1 Runt domain via a dynamic conformational equilibrium.

作者信息

Yan Jiangli, Liu Yizhou, Lukasik Stephen M, Speck Nancy A, Bushweller John H

机构信息

Department of Molecular Physiology and Biological Physics, University of Virginia, Charlottesville, Virginia 22906, USA.

出版信息

Nat Struct Mol Biol. 2004 Sep;11(9):901-6. doi: 10.1038/nsmb819. Epub 2004 Aug 22.

Abstract

Core binding factors (CBFs) are heterodimeric transcription factors consisting of a DNA-binding CBFalpha subunit and non-DNA-binding CBFbeta subunit. The CBFbeta subunit increases the affinity of the DNA-binding Runt domain of CBFalpha for DNA while making no direct contacts to the DNA. We present evidence for conformational exchange in the S-switch region in a Runt domain-DNA complex that is quenched upon CBFbeta binding. Analysis of (15)N backbone relaxation parameters shows that binding of CBFbeta reduces the backbone dynamics in the microsecond-to-millisecond time frame for several regions of the Runt domain that make energetically important contacts with the DNA. The DNA also undergoes conformational exchange in the Runt domain-DNA complex that is quenched in the presence of CBFbeta. Our results indicate that allosteric regulation by the CBFbeta subunit is mediated by a shift in an existing dynamic conformational equilibrium of both the Runt domain and DNA.

摘要

核心结合因子(CBFs)是由一个DNA结合性CBFα亚基和一个非DNA结合性CBFβ亚基组成的异二聚体转录因子。CBFβ亚基增加了CBFα的DNA结合Runt结构域对DNA的亲和力,而不与DNA直接接触。我们提供了证据表明,在Runt结构域-DNA复合物的S-开关区域存在构象交换,这种交换在CBFβ结合后被淬灭。对(15)N主链弛豫参数的分析表明,CBFβ的结合降低了Runt结构域几个与DNA形成重要能量接触区域在微秒到毫秒时间范围内的主链动力学。在Runt结构域-DNA复合物中,DNA也会发生构象交换,在CBFβ存在的情况下这种交换被淬灭。我们的结果表明,CBFβ亚基的变构调节是由Runt结构域和DNA现有的动态构象平衡的转变介导的。

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