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原始 RNA 复制的虚拟环状基因组模型。

The virtual circular genome model for primordial RNA replication.

机构信息

Howard Hughes Medical Institute, Department of Molecular Biology and Center for Computational and Integrative Biology, Massachusetts General Hospital, Boston, Massachusetts 02114, USA.

Department of Genetics, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

RNA. 2021 Jan;27(1):1-11. doi: 10.1261/rna.077693.120. Epub 2020 Oct 7.

Abstract

We propose a model for the replication of primordial protocell genomes that builds upon recent advances in the nonenzymatic copying of RNA. We suggest that the original genomes consisted of collections of oligonucleotides beginning and ending at all possible positions on both strands of one or more virtual circular sequences. Replication is driven by feeding with activated monomers and by the activation of monomers and oligonucleotides in situ. A fraction of the annealed configurations of the protocellular oligonucleotides would allow for template-directed oligonucleotide growth by primer extension or ligation. Rearrangements of these annealed configurations, driven either by environmental fluctuations or occurring spontaneously, would allow for continued oligonucleotide elongation. Assuming that shorter oligonucleotides were more abundant than longer ones, replication of the entire genome could occur by the growth of all oligonucleotides by as little as one nucleotide on average. We consider possible scenarios that could have given rise to such protocell genomes, as well as potential routes to the emergence of catalytically active ribozymes and thus the more complex cells of the RNA World.

摘要

我们提出了一种原始原细胞基因组复制的模型,该模型建立在最近在非酶 RNA 复制方面的进展基础上。我们认为,原始基因组由寡核苷酸组成,这些寡核苷酸开始于和结束于一条或多条虚拟环状序列的两条链上的所有可能位置。复制由用激活的单体喂养和单体和寡核苷酸原位激活驱动。一部分原细胞寡核苷酸的退火构型允许通过引物延伸或连接进行模板指导的寡核苷酸生长。这些退火构型的重排,无论是由环境波动驱动还是自发发生,都允许继续进行寡核苷酸延伸。假设较短的寡核苷酸比长的寡核苷酸更丰富,那么通过平均每个寡核苷酸增长一个核苷酸就可以完成整个基因组的复制。我们考虑了可能导致这种原细胞基因组出现的可能情况,以及出现催化活性核酶的潜在途径,从而出现 RNA 世界中更复杂的细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3819/7749632/46f8affceac8/1f01.jpg

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