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首页> 外文期刊>Journal of Molecular Biology >Structural basis of ARNT PAS-B dimerization: use of a common beta-sheet interface for hetero- and homodimerization.
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Structural basis of ARNT PAS-B dimerization: use of a common beta-sheet interface for hetero- and homodimerization.

机译:ARNT PAS-B二聚化的结构基础:使用通用的β-折叠界面进行异二聚和同二聚。

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The aryl hydrocarbon receptor nuclear translocator (ARNT) is a promiscuous bHLH-PAS (Per-ARNT-Sim) protein that forms heterodimeric transcriptional regulator complexes with several other bHLH-PAS subunits to control a variety of biological pathways, some of which are centrally involved in disease initiation and/or progression. One of these is the hypoxia response pathway, which allows eukaryotic cells to respond to low oxygen tension via the formation of a heterodimeric complex between ARNT and another bHLH-PAS protein, the hypoxia-inducible factor alpha (HIF-alpha). We have previously shown that the C-terminal PAS domains of an HIF-alpha isoform (HIF-2alpha) and ARNT interact in vitro, and that mutations in the solvent-exposed beta-sheet surface of the HIF-2alpha domain not only disrupt this interaction, but also greatly attenuate the hypoxia response in living cells. Here, we have solved the solution structure of the corresponding PAS domain of ARNT and show that it utilizes a very similar interface for the interaction with the HIF-2alpha PAS domain. We also show that this domain self-associates in a concentration-dependent manner, and that the interface used in this homodimeric complex is very similar to that used in the formation of heterodimer. In addition, using experimentally derived NMR restraints, we used the program HADDOCK to calculate a low-resolution model of the complex formed in solution by these two PAS domains, and confirm the validity of this model using site-directed spin labeling to obtain long-range distance information in solution. With this information, we propose a model for the mode of multi-PAS domain interaction in bHLH-PAS transcriptional activation complexes.
机译:芳基烃受体核转运子(ARNT)是混杂的bHLH-PAS(Per-ARNT-Sim)蛋白,与其他bHLH-PAS亚基形成异二聚体转录调节复合物,以控制多种生物学途径,其中一些涉及到生物途径在疾病的发生和/或进展中。其中之一是缺氧反应途径,该途径可使真核细胞通过在ARNT与另一种bHLH-PAS蛋白(缺氧诱导因子α(HIF-alpha))之间形成异二聚体复合物来应对低氧张力。先前我们已经表明,HIF-α亚型(HIF-2alpha)和ARNT的C端PAS域在体外相互作用,并且HIF-2alpha域的溶剂暴露的β-折叠表面中的突变不仅破坏了这一点相互作用,也大大减弱了活细胞的缺氧反应。在这里,我们已经解决了ARNT的相应PAS域的解决方案结构,并表明它利用非常相似的界面与HIF-2alpha PAS域进行交互。我们还显示该域以浓度依赖的方式自缔合,并且在该同二聚体复合物中使用的界面与在异二聚体形成中使用的界面非常相似。此外,使用实验得出的NMR限制条件,我们使用了HADDOCK程序来计算由这两个PAS域在溶液中形成的复合物的低分辨率模型,并使用定点自旋标记法确定该模型的有效性,从而获得长解决方案中的距离信息。有了这些信息,我们提出了bHLH-PAS转录激活复合物中多PAS域相互作用模式的模型。

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