The persistent contributions of RNA to eukaryotic Gen(om)e architecture and cellular function

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Abstract

Currently, the best scenario for earliest forms of life is based on RNA molecules as they have the proven ability to catalyze enzymatic reactions and harbor genetic information. Evolutionary principles valid today become apparent in such models already. Furthermore, many features of eukaryotic genome architecture might have their origins in an RNA or RNA/ protein (RNP) world, including the onset of a further transition, when DNA replaced RNA as the genetic bookkeeper of the cell. Chromosome maintenance, splicing, and regulatory function via RNA may be deeply rooted in the RNA/RNP worlds. Mostly in eukaryotes, conversion from RNA to DNA is still ongoing, which greatly impacts the plasticity of extant genomes. Raw material for novel genes encoding protein or RNA, or parts of genes including regulatory elements that selection can act on, continues to enter the evolutionary lottery.

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Brosius, J. (2014). The persistent contributions of RNA to eukaryotic Gen(om)e architecture and cellular function. Cold Spring Harbor Perspectives in Biology, 6(12). https://doi.org/10.1101/cshperspect.a016089

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