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Tag mechanism as a strategy for the RNA replicase to resist parasites in the RNA world

机译:标签机制作为RNA复制酶抵抗RNA世界中寄生虫的策略

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摘要

The idea that life may have started with an “RNA world” is attractive. Wherein, a crucial event (perhaps at the very beginning of the scenario) should have been the emergence of a ribozyme that catalyzes its own replication, i.e., an RNA replicase. Although now there is experimental evidence supporting the chemical feasibility of such a ribozyme, the evolutionary dynamics of how the replicase could overcome the “parasite” problem (because other RNAs may also exploit this ribozyme) and thrive, as described in the scenario, remains unclear. It has been suggested that spatial limitation may have been important for the replicase to confront parasites. However, more studies showed that such a mechanism is not sufficient when this ribozyme’s altruistic trait is taken into full consideration. “Tag mechanism”, which means labeling the replicase with a short subsequence for recognition in replication, may be a further mechanism supporting the thriving of the replicase. However, because parasites may also “equip” themselves with the tag, it is far from clear whether the tag mechanism could take effect. Here, we conducted a computer simulation using a Monte-Carlo model to study the evolutionary dynamics surrounding the development of a tag-driven (polymerase-type) RNA replicase in the RNA world. We concluded that (1) with the tag mechanism the replicase could resist the parasites and become prosperous, (2) the main underlying reason should be that the parasitic molecules, especially those strong parasites, are more difficult to appear in the tag-driven system, and (3) the tag mechanism has a synergic effect with the spatial limitation mechanism–while the former provides “time” for the replicase to escape from parasites, the latter provides “space” for the replicase to escape. Notably, tags may readily serve as “control handles”, and once the tag mechanism was exploited, the evolution towards complex life may have been much easier.
机译:生命可能始于“ RNA世界”的想法很有吸引力。其中,关键事件(也许是在场景的最开始)应该是核酶的出现,该酶催化自身复制,即RNA复制酶。尽管现在有实验证据支持这种核酶的化学可行性,但是如该场景中所述,复制酶如何克服“寄生虫”问题(因为其他RNA也可能利用该核酶)和壮成长的进化动力学仍不清楚。已经提出,空间限制对于复制酶对抗寄生虫可能已经很重要。但是,更多的研究表明,如果充分考虑这种核酶的无私特征,这种机制是不够的。 “标记机制”,意味着用较短的子序列标记复制酶以在复制中识别,可能是支持复制酶兴旺发展的另一种机制。但是,由于寄生虫也可能为自己“配备”标签,因此尚不清楚标签机制是否会生效。在这里,我们使用蒙特卡洛模型进行了计算机模拟,以研究围绕RNA驱动的标签驱动(聚合酶型)RNA复制酶的发展过程的进化动力学。我们得出的结论是:(1)通过标签机制,复制酶可以抵抗寄生虫并变得旺盛;(2)主要原因可能是寄生分子,尤其是那些强寄生虫,在标签驱动系统中更难出现(3)标签机制与空间限制机制具有协同作用,而前者为复制酶从寄生虫中逃逸提供了“时间”,而后者为复制酶逃逸提供了“空间”。值得注意的是,标签可以很容易地充当“控制柄”,一旦使用了标签机制,向复杂生活的演进就容易得多。

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