School of Chemical Sciences, Indian Association for the Cultivation of Science, Jadavpur, Kolkata, 700032, India.
Phys Chem Chem Phys. 2021 Jul 14;23(27):14764-14769. doi: 10.1039/d1cp01486b.
Hydrated proton at membrane interfaces plays an important role in the bioenergetic process of almost all organisms. Herein, the signature of the hydrated proton at membrane interfaces has been investigated by measuring the vibrational sum frequency generated (VSFG) spectra of negatively charged and zwitterionic lipids in the presence of different concentrations of acids. The addition of acids decreases the intensity of the OH stretch of the VSFG signal of water present at the negatively charged and zwitterionic lipids along with the enhanced intensity of the broad VSFG signal in the range of 2500-2800 cm-1. The enhanced intensity of the broad continuum observed in the range of 2500-2800 cm-1 has been assigned to the signature of the hydrated proton at the lipid interfaces. The decrease in the VSFG signal of the OH stretch of water along with the appearance of the broad signal suggests that the hydrated proton exists in the vicinity of the lipid interfaces and restructures the interaction between the interfacial water molecules.
水合质子在膜界面上的作用对于几乎所有生物体的生物能量过程都非常重要。在此,通过测量带负电荷和两性离子脂质在存在不同浓度酸时产生的振动和频产生(VSFG)谱,研究了膜界面上水合质子的特征。随着带负电荷和两性离子脂质中存在的水的 OH 伸缩 VSFG 信号强度的降低,以及在 2500-2800cm-1 范围内宽 VSFG 信号强度的增强,酸的加入降低了 VSFG 信号强度。在 2500-2800cm-1 范围内观察到的增强的宽连续谱的强度被分配到脂质界面上水合质子的特征。随着水的 OH 伸缩 VSFG 信号的降低和宽信号的出现,表明水合质子存在于脂质界面附近,并重新构建了界面水分子之间的相互作用。