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ARNT PAS-B has a fragile native state structure with an alternative β-sheet register nearby in sequence space

机译:ARNT PAS-B具有脆弱的原始状态结构序列空间附近有一个备用β-sheet寄存器

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摘要

The aryl hydrocarbon receptor nuclear translocator (ARNT) is a basic helix–loop–helix Period/ARNT/Single-minded (bHLH-PAS) protein that controls various biological pathways as part of dimeric transcriptional regulator complexes with other bHLH-PAS proteins. The two PAS domains within ARNT, PAS-A and PAS-B, are essential for the formation of these complexes because they mediate protein–protein interactions via residues located on their β-sheet surfaces. While investigating the importance of residues in ARNT PAS-B involved in these interactions, we uncovered a point mutation (Y456T) on the solvent-exposed β-sheet surface that allowed this domain to interconvert with a second, stable conformation. Although both conformations are present in equivalent quantities in the Y456T mutant, this can be shifted almost completely to either end point by additional mutations. A high-resolution solution structure of a mutant ARNT PAS-B domain stabilized in the new conformation revealed a 3-residue slip in register and accompanying inversion of the central Iβ-strand. We have demonstrated that the new conformation has >100-fold lower in vitro affinity for its heterodimerization partner, hypoxia-inducible factor 2α PAS-B. We speculate that the pliability in β-strand register is related to the flexibility required of ARNT to bind to several partners and, more broadly, to the abilities of some PAS domains to regulate their activities in response to small-molecule cofactors.
机译:芳基碳氢化合物受体核转运子(ARNT)是基本的螺旋-环-螺旋周期/ ARNT /单心(bHLH-PAS)蛋白,它作为与其他bHLH-PAS蛋白的二聚体转录调节复合物的一部分,控制着各种生物途径。 ARNT中的两个PAS域PAS-A和PAS-B对于形成这些复合物至关重要,因为它们通过位于其β-折叠表面的残基介导蛋白质之间的相互作用。在调查参与这些相互作用的ARNT PAS-B中残基的重要性时,我们发现了暴露于溶剂的β-折叠表面上的点突变(Y456T),该突变允许该结构域与第二个稳定构象互变。尽管两种构象在Y456T突变体中的存在量相同,但可以通过其他突变将其几乎完全转移到任一端点。稳定在新构象中的突变体ARNT PAS-B结构域的高分辨率溶液结构揭示了3个残基错位并伴有中心Iβ链的反转。我们已经证明,新构象对其异二聚体伴侣低氧诱导因子2αPAS-B的体外亲和力低100倍以上。我们推测β-链寄存器的柔韧性与ARNT结合几个伴侣所需的灵活性有关,更广泛地说,与某些PAS域调节小分子辅因子活性的能力有关。

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