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Autocatalytic sets in a partitioned biochemical network

机译:分区生化网络中的自催化集

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Background In previous work, RAF theory has been developed as a tool for making theoretical progress on the origin of life question, providing insight into the structure and occurrence of self-sustaining and collectively autocatalytic sets within catalytic polymer networks. We present here an extension in which there are two “independent” polymer sets, where catalysis occurs within and between the sets, but there are no reactions combining polymers from both sets. Such an extension reflects the interaction between nucleic acids and peptides observed in modern cells and proposed forms of early life. Results We present theoretical work and simulations which suggest that the occurrence of autocatalytic sets is robust to the partitioned structure of the network. We also show that autocatalytic sets remain likely even when the molecules in the system are not polymers, and a low level of inhibition is present. Finally, we present a kinetic extension which assigns a rate to each reaction in the system, and show that identifying autocatalytic sets within such a system is an NP-complete problem. Conclusions Recent experimental work has challenged the necessity of an RNA world by suggesting that peptide-nucleic acid interactions occurred early in chemical evolution. The present work indicates that such a peptide-RNA world could support the spontaneous development of autocatalytic sets and is thus a feasible alternative worthy of investigation.
机译:背景技术在先前的工作中,RAF理论已经发展成为在生命起源问题上取得理论进展的工具,可深入了解催化聚合物网络中自持和集体自催化集的结构和发生情况。我们在这里给出一个扩展,其中有两个“独立的”聚合物组,其中在组内和组之间发生催化作用,但是没有反应将两个组中的聚合物结合在一起。这种延伸反映了在现代细胞中观察到的核酸与肽之间的相互作用以及拟议的早期生命形式。结果我们提供了理论工作和模拟结果,这些结果表明自催化集的出现对网络的分区结构具有鲁棒性。我们还表明,即使系统中的分子不是聚合物,并且存在低水平的抑制作用,自催化集仍然可能存在。最后,我们提出了动力学扩展,该动力学扩展将速率分配给系统中的每个反应,并表明在这种系统中识别自催化集是一个NP完全问题。结论最近的实验工作提出了肽-核酸相互作用发生在化学进化的早期,从而挑战了RNA世界的必要性。目前的工作表明这种肽RNA世界可以支持自催化集的自发发展,因此是值得研究的可行替代方案。

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