Graduate Program in Biochemistry and Biophysics, Rensselaer Polytechnic Institute, Troy, NY 12180.
Department of Biological Sciences, Rensselaer Polytechnic Institute, Troy, NY 12180.
Proc Natl Acad Sci U S A. 2018 Aug 28;115(35):E8153-E8161. doi: 10.1073/pnas.1807379115. Epub 2018 Aug 13.
The effect of introducing internal cavities on protein native structure and global stability has been well documented, but the consequences of these packing defects on folding free-energy landscapes have received less attention. We investigated the effects of cavity creation on the folding landscape of the leucine-rich repeat protein pp32 by high-pressure (HP) and urea-dependent NMR and high-pressure small-angle X-ray scattering (HPSAXS). Despite a modest global energetic perturbation, cavity creation in the N-terminal capping motif (N-cap) resulted in very strong deviation from two-state unfolding behavior. In contrast, introduction of a cavity in the most stable, C-terminal half of pp32 led to highly concerted unfolding, presumably because the decrease in stability by the mutations attenuated the N- to C-terminal stability gradient present in WT pp32. Interestingly, enlarging the central cavity of the protein led to the population under pressure of a distinct intermediate in which the N-cap and repeats 1-4 were nearly completely unfolded, while the fifth repeat and the C-terminal capping motif remained fully folded. Thus, despite modest effects on global stability, introducing internal cavities can have starkly distinct repercussions on the conformational landscape of a protein, depending on their structural and energetic context.
引入内部空腔对蛋白质天然结构和整体稳定性的影响已有大量文献记载,但这些堆积缺陷对折叠自由能景观的影响却较少受到关注。我们通过高压(HP)和尿素依赖的 NMR 和高压小角 X 射线散射(HPSAXS)研究了空腔形成对富含亮氨酸重复蛋白 pp32 折叠景观的影响。尽管存在适度的整体能量扰动,但在 N 端帽状结构域(N-cap)中形成空腔导致与两态展开行为非常强烈的偏离。相比之下,在 pp32 最稳定的 C 端半部分引入空腔导致高度协调的展开,可能是因为突变导致稳定性降低,削弱了 WT pp32 中存在的 N 到 C 端稳定性梯度。有趣的是,扩大蛋白质的中央空腔会导致在压力下出现明显的中间态,其中 N-cap 和重复 1-4 几乎完全展开,而第五个重复和 C 端帽状结构域仍然完全折叠。因此,尽管对整体稳定性的影响不大,但引入内部空腔会根据其结构和能量背景对蛋白质的构象景观产生明显不同的影响。