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超分子巨泡的自复制与包封 DNA 的扩增相结合。

Self-reproduction of supramolecular giant vesicles combined with the amplification of encapsulated DNA.

机构信息

Department of Basic Science, Graduate School of Arts and Sciences, University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo 153-8902, Japan.

出版信息

Nat Chem. 2011 Sep 4;3(10):775-81. doi: 10.1038/nchem.1127.

Abstract

The construction of a protocell from a materials point of view is important in understanding the origin of life. Both self-reproduction of a compartment and self-replication of an informational substance have been studied extensively, but these processes have typically been carried out independently, rather than linked to one another. Here, we demonstrate the amplification of DNA (encapsulated guest) within a self-reproducible cationic giant vesicle (host). With the addition of a vesicular membrane precursor, we observe the growth and spontaneous division of the giant vesicles, accompanied by distribution of the DNA to the daughter giant vesicles. In particular, amplification of the DNA accelerated the division of the giant vesicles. This means that self-replication of an informational substance has been linked to self-reproduction of a compartment through the interplay between polyanionic DNA and the cationic vesicular membrane. Our self-reproducing giant vesicle system therefore represents a step forward in the construction of an advanced model protocell.

摘要

从材料的角度来看,构建原细胞对于理解生命的起源非常重要。自我复制的隔间和信息物质的自我复制都已经被广泛研究,但是这些过程通常是独立进行的,而不是相互关联的。在这里,我们展示了 DNA(包裹的客体)在自我复制的阳离子巨型囊泡(主体)内的扩增。通过添加囊泡膜前体,我们观察到巨型囊泡的生长和自发分裂,伴随着 DNA 分配到子巨型囊泡中。特别是,DNA 的扩增加速了巨型囊泡的分裂。这意味着信息物质的自我复制已经通过带负电荷的 DNA 与阳离子囊泡膜之间的相互作用与隔间的自我复制联系起来。因此,我们的自我复制巨型囊泡系统代表了构建先进模型原细胞的一个重要进展。

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