A recursive vesicle-based model protocell with a primitive model cell cycle

Self-organized lipid structures (protocells) have been proposed as an intermediate between nonliving material and cellular life. Synthetic production of model protocells can demonstrate the potential processes by which living cells first arose. While we have previously described a giant vesicle (GV)...

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Veröffentlicht in:Nature communications 2015-09, Vol.6 (1), p.8352-8352, Article 8352
Hauptverfasser: Kurihara, Kensuke, Okura, Yusaku, Matsuo, Muneyuki, Toyota, Taro, Suzuki, Kentaro, Sugawara, Tadashi
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Sprache:eng
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Zusammenfassung:Self-organized lipid structures (protocells) have been proposed as an intermediate between nonliving material and cellular life. Synthetic production of model protocells can demonstrate the potential processes by which living cells first arose. While we have previously described a giant vesicle (GV)-based model protocell in which amplification of DNA was linked to self-reproduction, the ability of a protocell to recursively self-proliferate for multiple generations has not been demonstrated. Here we show that newborn daughter GVs can be restored to the status of their parental GVs by pH-induced vesicular fusion of daughter GVs with conveyer GVs filled with depleted substrates. We describe a primitive model cell cycle comprising four discrete phases (ingestion, replication, maturity and division), each of which is selectively activated by a specific external stimulus. The production of recursive self-proliferating model protocells represents a step towards eventual production of model protocells that are able to mimic evolution. The synthetic production of model protocells, which represent potential intermediates between nonliving material and living cells, may help to explain the origin of cellular life. Here, Kurihara et al . develop a giant vesicle-based model protocell that is able to self-proliferate recursively in response to external stimuli.
ISSN:2041-1723
2041-1723
DOI:10.1038/ncomms9352