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磷脂膜手性的天体化学演化特征。

The astrochemical evolutionary traits of phospholipid membrane homochirality.

机构信息

Institut de Chimie de Nice, CNRS UMR 7272, Université Côte d'Azur, Nice, France.

ISA, Department of Physics and Astronomy, Aarhus University, Aarhus, Denmark.

出版信息

Nat Rev Chem. 2024 Sep;8(9):652-664. doi: 10.1038/s41570-024-00627-w. Epub 2024 Jul 18.

Abstract

Compartmentalization is crucial for the evolution of life. Present-day phospholipid membranes exhibit a high level of complexity and species-dependent homochirality, the so-called lipid divide. It is possible that less stable, yet more dynamic systems, promoting out-of-equilibrium environments, facilitated the evolution of life at its early stages. The composition of the preceding primitive membranes and the evolutionary route towards complexity and homochirality remain unexplained. Organics-rich carbonaceous chondrites are evidence of the ample diversity of interstellar chemistry, which may have enriched the prebiotic milieu on early Earth. This Review evaluates the detections of simple amphiphiles - likely ancestors of membrane phospholipids - in extraterrestrial samples and analogues, along with potential pathways to form primitive compartments on primeval Earth. The chiroptical properties of the chiral backbones of phospholipids provide a guide for future investigations into the origins of phospholipid membrane homochirality. We highlight a plausible common pathway towards homochirality of lipids, amino acids, and sugars starting from enantioenriched monomers. Finally, given their high recalcitrance and resistance to degradation, lipids are among the best candidate biomarkers in exobiology.

摘要

分区化对于生命的进化至关重要。现今的磷脂膜表现出高度的复杂性和物种依赖性的手性,即所谓的脂质分裂。可能是不太稳定但更具动态性的系统促进了非平衡环境的形成,从而在生命的早期阶段推动了生命的进化。先前原始膜的组成以及向复杂性和手性进化的途径仍未得到解释。富含有机物的碳质球粒陨石是星际化学多样性的证据,这可能丰富了早期地球上的原始环境。这篇综述评估了在天体样本和类似物中简单两亲分子(可能是膜磷脂的前身)的检测,以及在原始地球上形成原始隔室的潜在途径。磷脂手性骨架的手性光学性质为研究磷脂膜手性起源提供了指导。我们强调了一种从手性富集单体开始的、可能通向脂质、氨基酸和糖手性的共同途径。最后,鉴于其高稳定性和抗降解性,脂质是天体生物学中最好的候选生物标志物之一。

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