Zhang Li, Liu Jinchan, Voïtchovsky Kislon, Rani Chaudhary E, Pullanchery Saranya, Dedic Jan, Batista Victor S, Fantner Georg E, Roke Sylvie
Laboratory for Fundamental BioPhotonics (LBP), Institute of Bioengineering (IBI), School of Engineering (STI), École Polytechnique Fédérale de Lausanne (EPFL), Lausanne CH-1015, Switzerland.
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven CT06520, United States.
J Am Chem Soc. 2025 Sep 17;147(37):33413-33423. doi: 10.1021/jacs.5c05215. Epub 2025 Sep 4.
Life requires chemical chiral specificity. The emergence of enantioselectivity is unknown but has been linked to diverse scenarios for the origin of life, ranging from an extraterrestrial origin to polarization-induced effects, and magnetic field-induced mineral templating. These scenarios require an originating mechanism and a subsequent enhancement step, leading to widespread chiral specificity. The common denominator in all scenarios is water, which provides an environment for the enantioselective process. Because water is a nonchiral molecule, it has not been considered as an active ingredient in either of these processes. Here, we show that water can form extended chiral ordered structures that are induced by interactions with simple chiral prebiotic molecules, such as lipids and sugars. Using a combination of molecular dynamics simulations, chiral-sensitive and interface-specific vibrational sum frequency scattering, second harmonic scattering, and atomic force microscopy, the interfacial structure of water on nanoscale lipid membranes was investigated. Out-of-plane H-bonding interactions between achiral liposomes and simple chiral cyclic sugars lead to ordered, spectroscopically ice-like, chiral water suprastructures that extend along the self-assembled lipid-sugar complex over distances >10 μm. Such highly ordered self-assemblies could potentially have provided microenvironments that enable the enhancement of chirality.
生命需要化学手性特异性。对映选择性的出现尚不清楚,但已与多种生命起源场景相关联,从地外起源到偏振诱导效应,再到磁场诱导的矿物模板作用。这些场景需要一个起源机制和随后的增强步骤,从而导致广泛的手性特异性。所有场景中的共同要素是水,它为对映选择性过程提供了一个环境。由于水是一种非手性分子,它在这些过程中都未被视为活性成分。在这里,我们表明水可以形成由与简单的手性益生元分子(如脂质和糖类)相互作用诱导的扩展手性有序结构。结合分子动力学模拟、手性敏感和界面特异性振动和频散射、二次谐波散射以及原子力显微镜,研究了水在纳米级脂质膜上的界面结构。非手性脂质体与简单的手性环状糖之间的面外氢键相互作用导致有序的、光谱上类似冰的手性水超结构,这些超结构沿着自组装的脂质 - 糖复合物延伸超过10μm的距离。这种高度有序的自组装可能潜在地提供了能够增强手性的微环境。