Department of Biology, University of Copenhagen, 1017 København K, Copenhagen, Denmark.
J Am Chem Soc. 2013 Jul 10;135(27):10155-63. doi: 10.1021/ja4045532. Epub 2013 Jun 25.
Intrinsically disordered proteins (IDPs) are widespread and important in biology but defy the classical protein structure-function paradigm by being functional in the absence of a stable, folded conformation. Here we investigate the coupling between transient secondary and tertiary structure in the protein activator for thyroid hormone and retinoid receptors (ACTR) by rationally modulating the helical propensity of a partially formed α-helix via mutations. Eight mutations predicted to affect the population of a transient helix were produced and investigated by NMR spectroscopy. Chemical shift changes distant to the mutation site are observed in regions containing other transient helices indicating that distant helices are stabilized through long-range hydrophobic helix-helix interactions and demonstrating the coupling of transient secondary and tertiary structure. The long-range structure of ACTR is also probed using paramagnetic relaxation enhancements (PRE) and residual dipolar couplings, which reveal an additional long-range contact between the N- and C-terminal segments. Compared to residual dipolar couplings and PRE, modulation of the helical propensity by mutagenesis thus reveals a different set of long-range interactions that may be obscured by stronger interactions that dominate other NMR measurements. This approach thus offers a complementary and generally applicable strategy for probing long-range structure in disordered proteins.
无规卷曲蛋白(IDPs)在生物学中广泛存在且十分重要,但它们缺乏稳定的折叠构象,因此功能与经典的蛋白质结构-功能范例相矛盾。在这里,我们通过合理调节部分形成的α-螺旋的螺旋倾向,通过突变来研究甲状腺激素和视黄酸受体(ACTR)的蛋白质激活剂中瞬态二级和三级结构之间的偶联。通过 NMR 光谱研究了产生的 8 种预测会影响瞬态螺旋体种群的突变。在包含其他瞬态螺旋体的区域中观察到远离突变位点的化学位移变化,表明远程疏水性螺旋-螺旋相互作用稳定了其他螺旋体,并证明了瞬态二级和三级结构的偶联。还使用顺磁弛豫增强(PRE)和残差偶极耦合来探测 ACTR 的远程结构,这揭示了 N 端和 C 端片段之间的另一个远程接触。与残差偶极耦合和 PRE 相比,通过诱变调节螺旋倾向揭示了不同的远程相互作用,这些相互作用可能会被主导其他 NMR 测量的更强相互作用所掩盖。因此,这种方法为探测无序蛋白质的远程结构提供了一种互补且普遍适用的策略。