首页 /研究 /Autonomous model protocell division driven by molecular replication
OTHER

Autonomous model protocell division driven by molecular replication

James W. Taylor, Seyed Ali Eghtesadi, Laurie J. Points, Tianbo Liu, Leroy Cronin

发表年份
2017
引用次数
59
访问权限
开放获取

摘要

The coupling of compartmentalisation with molecular replication is thought to be crucial for the emergence of the first evolvable chemical systems. Minimal artificial replicators have been designed based on molecular recognition, inspired by the template copying of DNA, but none yet have been coupled to compartmentalisation. Here, we present an oil-in-water droplet system comprising an amphiphilic imine dissolved in chloroform that catalyses its own formation by bringing together a hydrophilic and a hydrophobic precursor, which leads to repeated droplet division. We demonstrate that the presence of the amphiphilic replicator, by lowering the interfacial tension between droplets of the reaction mixture and the aqueous phase, causes them to divide. Periodic sampling by a droplet-robot demonstrates that the extent of fission is increased as the reaction progresses, producing more compartments with increased self-replication. This bridges a divide, showing how replication at the molecular level can be used to drive macroscale droplet fission.Coupling compartmentalisation and molecular replication is essential for the development of evolving chemical systems. Here the authors show an oil-in-water droplet containing a self-replicating amphiphilic imine that can undergo repeated droplet division.

关键词

ProtocellAmphiphileReplication (statistics)Amphiphilic moleculeNanotechnologyImineMolecular dynamicsAqueous solutionAbiogenesisMaterials science

相关论文

查看 OTHER 分类全部论文