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原核细胞之间的运输——隧道纳米管。

Transport among protocells tunneling nanotubes.

机构信息

Centre for Molecular Medicine Norway, Faculty of Medicine, University of Oslo, 0318 Oslo, Norway.

出版信息

Nanoscale. 2022 Jul 28;14(29):10418-10427. doi: 10.1039/d2nr02290g.

Abstract

We employ model protocell networks for evaluation of molecular transport through lipid nanotubes as potential means of communication among primitive cells on the early Earth. Network formation is initiated by deposition of lipid reservoirs onto a SiO surface in an aqueous environment. These reservoirs autonomously develop into surface-adhered protocells interconnected lipid nanotubes while encapsulating solutes from the ambient buffer. We observe the uptake of DNA and RNA, and their diffusive transport between the lipid compartments the interconnecting nanotubes. By means of an analytical model we determine key physical parameters affecting the transport, such as nanotube diameter and compartment size. We conclude that nanotube-mediated transport could have been a possible pathway of communication between primitive cells on the early Earth, circumventing the necessity for crossing the membrane barrier. We suggest this transport as a feasible means of RNA and DNA exchange under primitive prebiotic conditions, possibly facilitating early replication.

摘要

我们利用模型原细胞网络来评估通过脂质纳米管的分子运输,作为早期地球上原始细胞之间通讯的潜在手段。网络的形成是通过将脂质储库沉积在水相环境中的 SiO 表面上开始的。这些储库自主地发育成表面附着的原细胞,相互连接的脂质纳米管,同时将环境缓冲液中的溶质包裹起来。我们观察到 DNA 和 RNA 的摄取,以及它们在脂质隔室和连接的纳米管之间的扩散运输。通过分析模型,我们确定了影响运输的关键物理参数,例如纳米管直径和隔室尺寸。我们的结论是,纳米管介导的运输可能是早期地球上原始细胞之间通讯的一种可能途径,避免了跨越膜屏障的必要性。我们提出这种运输是在原始的前生物条件下进行 RNA 和 DNA 交换的可行方式,可能有助于早期复制。

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