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The emergence of ribozymes synthesizing membrane components in RNA-based protocells

机译:核酶在基于RNA的原生细胞中合成膜成分的出现

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A significant problem of the origin of life is the emergence of cellular self-replication. In the context of the “RNA world”, a crucial concern is how the RNA-based protocells could achieve the ability to produce their own membrane. Here we show, with the aid of a computer simulation, that for these protocells, there would be “immediately” a selection pressure for the emergence of a ribozyme synthesizing membrane components. The ribozyme would promote the enlargement of cellular space and favor the incoming (by permeation) of RNA’s precursors, thus benefit the replication of inner RNA, including itself. Via growth and division, protocells containing the ribozyme would achieve superiority and spread in the system, and meanwhile the ribozyme would spread in the system. The present work is inspiring because it suggests that the transition from molecular self-replication to cellular self-replication might have occurred naturally (and necessarily) in the origin of life, leading to the emergence of Darwinian evolution at the cellular level.
机译:生命起源的一个重要问题是细胞自我复制的出现。在“ RNA世界”的背景下,一个至关重要的问题是基于RNA的原始细胞如何实现产生自己的膜的能力。在这里,我们通过计算机模拟表明,对于这些原始细胞,将“立即”对核酶合成膜成分的出现施加选择压力。核酶将促进细胞空间的扩大,并有利于RNA前体的进入(通过渗透),从而有利于内部RNA的复制,包括其自身。通过生长和分裂,含有核酶的原始细胞将获得优势并在系统中扩散,同时核酶将在系统中扩散。当前的工作是鼓舞人心的,因为它表明从分子自我复制到细胞自我复制的转变可能在生命起源中自然发生(并且必然发生),从而导致达尔文进化在细胞水平上的出现。

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