National Laboratory of Solid State Microstructure and Department of Physics, Nanjing University, Nanjing, People's Republic of China.
Biophys J. 2012 May 2;102(9):2149-57. doi: 10.1016/j.bpj.2012.03.042.
Per-ARNT-Sim (PAS) domains serve as versatile binding motifs in many signal-transduction proteins and are able to respond to a wide spectrum of chemical or physical signals. Despite their diverse functions, PAS domains share a conserved structure. It has been suggested that the structure of PAS domains is flexible and thus adaptable to many binding partners. However, direct measurement of the flexibility of PAS domains has not yet been provided. Here, we quantitatively measure the mechanical unfolding of a PAS domain, ARNT PAS-B, using single-molecule atomic force microscopy. Our force spectroscopy results indicate that the structure of ARNT PAS-B can be unraveled under mechanical forces as low as ~30 pN due to its broad potential well for the mechanical unfolding transition of ~2 nm. This allows the PAS-B domain to extend by up to 75% of its resting end-to-end distance without unfolding. Moreover, we found that the ARNT PAS-B domain unfolds in two distinct pathways via a kinetic partitioning mechanism. Sixty-seven percent of ARNT PAS-B unfolds through a simple two-state pathway, whereas the other 33% unfolds with a well-defined intermediate state in which the C-terminal β-hairpin is detached. We propose that the structural flexibility and force-induced partial unfolding of PAS-B domains may provide a unique mechanism for them to recruit diverse binding partners and lower the free-energy barrier for the formation of the binding interface.
PAS 结构域作为许多信号转导蛋白中的多功能结合基序,能够对广泛的化学或物理信号做出响应。尽管它们具有不同的功能,但 PAS 结构域具有保守的结构。有人认为,PAS 结构域的结构是灵活的,因此能够适应许多结合伴侣。然而,目前还没有直接测量 PAS 结构域柔韧性的方法。在这里,我们使用单分子原子力显微镜定量测量了 PAS 结构域 ARNT PAS-B 的机械展开。我们的力谱结果表明,由于其机械展开转变的宽势阱约为 2nm,ARNT PAS-B 的结构可以在低至~30pN 的机械力下解开。这使得 PAS-B 结构域可以在不展开的情况下伸展其静止端到端距离的 75%。此外,我们发现 ARNT PAS-B 结构域通过动力学分配机制以两种不同的途径展开。67%的 ARNT PAS-B 通过简单的两态途径展开,而另外 33%的展开则具有明确的中间状态,其中 C 端β发夹与核心结构域分离。我们提出,PAS-B 结构域的结构柔韧性和力诱导的部分展开可能为其招募不同的结合伴侣并降低结合界面形成的自由能障碍提供了一种独特的机制。