Department of Physics, University of Rhode Island, Kingston, RI 02881.
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06511
Proc Natl Acad Sci U S A. 2020 Jun 2;117(22):12095-12100. doi: 10.1073/pnas.1917857117. Epub 2020 May 14.
To advance mechanistic understanding of membrane-associated peptide folding and insertion, we have studied the kinetics of three single tryptophan pHLIP (pH-Low Insertion Peptide) variants, where tryptophan residues are located near the N terminus, near the middle, and near the inserting C-terminal end of the pHLIP transmembrane helix. Single-tryptophan pHLIP variants allowed us to probe different parts of the peptide in the pathways of peptide insertion into the lipid bilayer (triggered by a pH drop) and peptide exit from the bilayer (triggered by a rise in pH). By using pH jumps of different magnitudes, we slowed down the processes and established the intermediates that helped us to understand the principles of insertion and exit. The obtained results should also aid the applications in medicine that are now entering the clinic.
为了深入了解与膜相关的肽折叠和插入的机制,我们研究了三个带有单个色氨酸的 pHLIP(pH 低插入肽)变体的动力学,其中色氨酸残基位于 pHLIP 跨膜螺旋的 N 端附近、中间附近和插入的 C 端附近。单个色氨酸 pHLIP 变体使我们能够在肽插入脂质双层(由 pH 值下降触发)和肽从双层中逸出(由 pH 值上升触发)的途径中探测肽的不同部分。通过使用不同幅度的 pH 跳跃,我们减缓了这些过程并确定了中间产物,这有助于我们理解插入和逸出的原理。所得结果也应有助于目前正在进入临床应用的医学应用。