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首页> 外文期刊>Journal of Molecular Biology >Repositioning about the dimer interface of the transcription regulator CooA: a major signal transduction pathway between the effector and DNA-binding domains.
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Repositioning about the dimer interface of the transcription regulator CooA: a major signal transduction pathway between the effector and DNA-binding domains.

机译:重新定位转录调节因子CooA的二聚体界面:效应子和DNA结合域之间的主要信号转导途径。

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摘要

Activation of the homodimeric transcriptional regulator CooA depends on the coupling of CO binding at an effector domain heme with the allosteric repositioning of the DNA-binding domain F-helix that promotes specific DNA interaction. By analogy to the homologous cAMP receptor protein (CRP), it has been proposed that effector binding elicits subunit reorientation about their coiled-coil C-helix interface, and that this effector domain reorientation stabilizes the active position of the DNA-binding domains. Here, we describe experiments in which effector-independent "CooA*" variants were selected following randomization of a six-residue portion of the C-helix dimerization domain. Subsequent activity analyses, both in vivo and in vitro, were consistent with a model wherein improved C-helix leucine zipper equilibrium towards the active conformation, although full activation remained CO-dependent. However, in addition to the improved leucine zipper, maximal CooA* activity required additional C-helix changeswhich in a WT background decreased normal CO-dependent DNA-binding 100-fold. This seemingly paradoxical combination suggested that maximal CooA* activity depended both on the improved coiled-coil interactions and the decoupling of the signal pathway within the effector domain. Both types of C-helix changes indicate that its repositioning is crucial for the allosteric shift in the inactive/active equilibrium of the DNA-binding domain.
机译:同二聚体转录调节因子CooA的激活取决于效应域血红素上的CO结合与促进特异性DNA相互作用的DNA结合域F-螺旋的变构重新定位的耦合。通过类似于同源cAMP受体蛋白(CRP),已提出效应子结合引起绕其卷曲螺旋C-螺旋界面的亚基重新定向,并且该效应子结构域重新定向稳定了DNA结合结构域的活性位置。在这里,我们描述了以下实验,其中在C螺旋二聚化域的六个残基部分随机化后,选择了与效应子无关的“ CooA *”变体。随后的体内和体外活性分析与模型相符,其中完全C螺旋亮氨酸拉链平衡朝着活性构象的平衡,尽管完全激活仍然依赖于CO。但是,除了改善的亮氨酸拉链外,最大的CooA *活性还需要额外的C螺旋变化,这在WT背景下会使正常的CO依赖性DNA结合降低100倍。这种看似自相矛盾的组合表明,最大的CooA *活性取决于改善的卷曲螺旋相互作用和效应域内信号途径的去耦。两种类型的C螺旋变化均表明,其重新定位对于DNA结合域无活性/活性平衡中的变构变化至关重要。

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