Conti Nibali Valeria, Branca Caterina, Wanderlingh Ulderico, Verduci Rosaria, Bonaccorso Elisa, Ciccolo Andrea, D'Angelo Giovanna
Department of Mathematics, Computer Science, Physics and Earth Science, University of Messina, Viale Stagno D'Alcontres 31, 98166 Messina, Italy.
Membranes (Basel). 2025 Feb 4;15(2):46. doi: 10.3390/membranes15020046.
Water in membrane interphases is vital for cellular biological functions, but despite its importance, the structure and function of biological water remain elusive. Here, by studying the OH stretching mode in partially hydrated lipid multilayers by FTIR measurements, relevant information on the water structure near the surface with lipid membranes has been gathered. The water hydrogen bond network is highly perturbed in the first layers that are in contact with the lipid membrane, exhibiting strong deviations from tetrahedral symmetry and a significant number of defects, such as isolated water molecules and a large number of hydrogen-bonded water dimers in the interphase region. These findings support the hypothesis that water chains form in phospholipid membranes, and are involved in the proton transfer across lipid bilayers by phosphate groups of opposing lipids. Furthermore, we have determined that even at very low hydration levels, a small amount of water is embedded within the confined spaces of the hydrocarbon region of phospholipid bilayers, which could potentially contribute to the structural stability of the lipid membrane.
膜界面中的水对于细胞生物学功能至关重要,但尽管其很重要,生物水的结构和功能仍然难以捉摸。在此,通过傅里叶变换红外光谱(FTIR)测量研究部分水合脂质多层膜中的OH伸缩模式,已收集到有关脂质膜表面附近水结构的相关信息。在与脂质膜接触的第一层中,水氢键网络受到高度扰动,呈现出与四面体对称性的强烈偏差以及大量缺陷,例如在界面区域中的孤立水分子和大量氢键连接的水二聚体。这些发现支持了磷脂膜中形成水链并通过相对脂质的磷酸基团参与跨脂质双层质子转移的假设。此外,我们已经确定,即使在非常低的水合水平下,少量的水也嵌入在磷脂双层烃区域的受限空间内,这可能有助于脂质膜的结构稳定性。