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复制延长短 DNA,减少序列偏倚并形成三聚体结构。

Replication elongates short DNA, reduces sequence bias and develops trimer structure.

机构信息

Systems Biophysics, Physics Department, Center for NanoScience, Ludwig-Maximilians-Universität München, Amalienstraße 54, 80799 Munich, Germany.

出版信息

Nucleic Acids Res. 2024 Feb 9;52(3):1290-1297. doi: 10.1093/nar/gkad1190.

Abstract

The origin of molecular evolution required the replication of short oligonucleotides to form longer polymers. Prebiotically plausible oligonucleotide pools tend to contain more of some nucleobases than others. It has been unclear whether this initial bias persists and how it affects replication. To investigate this, we examined the evolution of 12-mer biased short DNA pools using an enzymatic model system. This allowed us to study the long timescales involved in evolution, since it is not yet possible with currently investigated prebiotic replication chemistries. Our analysis using next-generation sequencing from different time points revealed that the initial nucleotide bias of the pool disappeared in the elongated pool after isothermal replication. In contrast, the nucleotide composition at each position in the elongated sequences remained biased and varied with both position and initial bias. Furthermore, we observed the emergence of highly periodic dimer and trimer motifs in the rapidly elongated sequences. This shift in nucleotide composition and the emergence of structure through templated replication could help explain how biased prebiotic pools could undergo molecular evolution and lead to complex functional nucleic acids.

摘要

分子进化的起源需要短寡核苷酸的复制,以形成更长的聚合物。在生物发生上合理的寡核苷酸池往往比其他核苷酸含有更多的某些碱基。目前还不清楚这种初始偏向是否持续存在,以及它如何影响复制。为了研究这一点,我们使用酶模型系统研究了 12 -mer 偏向短 DNA 池的进化。由于目前研究的前生物复制化学还不可能实现,这使我们能够研究进化所涉及的长时间尺度。我们使用来自不同时间点的下一代测序进行的分析表明,在等温复制后,池中的初始核苷酸偏倚在伸长的池中消失。相比之下,伸长序列中每个位置的核苷酸组成仍然存在偏向性,并且随位置和初始偏向性而变化。此外,我们在快速伸长的序列中观察到高度周期性的二聚体和三聚体基序的出现。这种核苷酸组成的变化和通过模板复制出现的结构可能有助于解释具有偏向性的前生物池如何经历分子进化,并导致复杂的功能性核酸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd96/10853772/dbea78ecbf6e/gkad1190figgra1.jpg

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