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前生物泡沫环境可使 RNA 寡聚化和积累。

Prebiotic Foam Environments to Oligomerize and Accumulate RNA.

机构信息

Systems Biophysics, Center for Nano-Science and Origins Cluster Initiative Department of Physics, Ludwig-Maximilians-Universität München, Amalienstrasse 54, 80799, München, Germany.

Center for Molecular Bioengineering, Technische Universität Dresden, Helmholtzstrasse 10, 01069, Dresden, Germany.

出版信息

Chembiochem. 2022 Dec 16;23(24):e202200423. doi: 10.1002/cbic.202200423. Epub 2022 Nov 18.

Abstract

When water interacts with porous rocks, its wetting and surface tension properties create air bubbles in large number. To probe their relevance as a setting for the emergence of life, we microfluidically created foams that were stabilized with lipids. A persistent non-equilibrium setting was provided by a thermal gradient. The foam's large surface area triggers capillary flows and wet-dry reactions that accumulate, aggregate and oligomerize RNA, offering a compelling habitat for RNA-based early life as it offers both wet and dry conditions in direct neighborhood. Lipids were screened to stabilize the foams. The prebiotically more probable myristic acid stabilized foams over many hours. The capillary flow created by the evaporation at the water-air interface provided an attractive force for molecule localization and selection for molecule size. For example, self-binding oligonucleotide sequences accumulated and formed micrometer-sized aggregates which were shuttled between gas bubbles. The wet-dry cycles at the foam bubble interfaces triggered a non-enzymatic RNA oligomerization from 2',3'-cyclic CMP and GMP which despite the small dry reaction volume was superior to the corresponding dry reaction. The found characteristics make heated foams an interesting, localized setting for early molecular evolution.

摘要

当水与多孔岩石相互作用时,其润湿性和表面张力特性会产生大量气泡。为了探究这些气泡在生命起源中的作用,我们使用脂质稳定微流控生成了泡沫。通过热梯度提供了一个持久的非平衡环境。泡沫的大表面积引发了毛细流动和干湿反应,这些反应会积累、聚集和寡聚化 RNA,为基于 RNA 的早期生命提供了一个引人注目的栖息地,因为它在直接相邻的地方提供了干湿条件。我们筛选了脂质来稳定泡沫。在多种条件下,更可能存在于原始环境中的豆蔻酸稳定了泡沫数小时。水-气界面蒸发产生的毛细流为分子定位和大小选择提供了吸引力。例如,自结合寡核苷酸序列在微米级大小的气隙之间积累并形成聚集体,这些聚集体在气隙之间穿梭。泡沫气泡界面的干湿循环触发了 2',3'-环 CMP 和 GMP 的非酶 RNA 寡聚化,尽管干燥反应体积较小,但效果优于相应的干燥反应。所发现的特征使加热泡沫成为早期分子进化的一个有趣的局部环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78b5/10100173/310c2918ca5f/CBIC-23-0-g003.jpg

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