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杂化有机-无机结构引发原始细胞样隔室的形成。

Hybrid organic-inorganic structures trigger the formation of primitive cell-like compartments.

机构信息

Cellular, Computational and Integrative Biology Department, Laboratory for Artificial Biology, University of Trento, Povo 38123, Italy.

Division of Geological and Planetary Sciences, California Institute of Technology, Pasadena, CA 91125.

出版信息

Proc Natl Acad Sci U S A. 2023 Aug 15;120(33):e2300491120. doi: 10.1073/pnas.2300491120. Epub 2023 Aug 10.

Abstract

Alkaline hydrothermal vents have become a candidate setting for the origins of life on Earth and beyond. This is due to several key features including the presence of gradients of temperature, redox potential, pH, the availability of inorganic minerals, and the existence of a network of inorganic pore spaces that could have served as primitive compartments. Chemical gardens have long been used as experimental proxies for hydrothermal vents. This paper investigates-10pc]Please note that the spelling of the following author name in the manuscript differs from the spelling provided in the article metadata: Richard J. G. Löffler. The spelling provided in the manuscript has been retained; please confirm. a set of prebiotic interactions between such inorganic structures and fatty alcohols. The integration of a medium-chain fatty alcohol, decanol, within these inorganic minerals, produced a range of emergent 3 dimensions structures at both macroscopic and microscopic scales. Fatty alcohols can be considered plausible prebiotic amphiphiles that might have assisted the formation of protocellular structures such as vesicles. The experiments presented herein show that neither chemical gardens nor decanol alone promote vesicle formation, but chemical gardens grown in the presence of decanol, which is then integrated into inorganic mineral structures, support vesicle formation. These observations suggest that the interaction of fatty alcohols and inorganic mineral structures could have played an important role in the emergence of protocells, yielding support for the evolution of living cells.

摘要

碱性热液喷口已成为地球内外生命起源的候选场所。这是由于几个关键特征,包括温度、氧化还原电位、pH 值、无机矿物质的可用性以及无机孔隙网络的存在,这些都可能充当原始隔间。化学花园长期以来一直被用作热液喷口的实验替代物。本文研究了一组无机结构和脂肪醇之间的前生物相互作用。在这些无机矿物质中整合一种中链脂肪醇,癸醇,在宏观和微观尺度上产生了一系列新兴的 3 维结构。脂肪醇可以被认为是合理的前生物两亲分子,它可能有助于囊泡等原细胞结构的形成。本文提出的实验表明,化学花园和癸醇本身都不能促进囊泡的形成,但是在癸醇存在下生长的化学花园,然后整合到无机矿物质结构中,支持囊泡的形成。这些观察结果表明,脂肪醇和无机矿物质结构的相互作用可能在原细胞的出现中发挥了重要作用,为活细胞的进化提供了支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79d1/10438843/e1f67a6de711/pnas.2300491120fig01.jpg

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