RNA-catalyzed evolution of catalytic RNA

被引:22
作者
Papastavrou, Nikolaos [1 ]
Horning, David P. [1 ]
Joyce, Gerald F. [1 ]
机构
[1] Salk Inst Biol Studies, La Jolla, CA 92037 USA
关键词
directed evolution; ribozyme; RNA polymerase; RNA replication; POLYMERASE RIBOZYME; SELF-CLEAVAGE; POLYMERIZATION; REQUIREMENTS; ORIGIN;
D O I
10.1073/pnas.2321592121
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
An RNA polymerase ribozyme that was obtained by directed evolution can propagate a functional RNA through repeated rounds of replication and selection, thereby enabling Darwinian evolution. Earlier versions of the polymerase did not have sufficient copying fidelity to propagate functional information, but a new variant with improved fidelity can replicate the hammerhead ribozyme through reciprocal synthesis of both the hammerhead and its complement, with the products then being selected for RNA-cleavage activity. Two evolutionary lineages were carried out in parallel, using either the prior low-fidelity or the newer high-fidelity polymerase. The former lineage quickly lost hammerhead functionality as the population diverged toward random sequences, whereas the latter evolved new hammerhead variants with improved fitness compared to the starting RNA. The increase in fitness was attributable to specific mutations that improved the replicability of the hammerhead, counterbalanced by a small decrease in hammerhead activity. Deep sequencing analysis was used to follow the course of evolution, revealing the emergence of a succession of variants that progressively diverged from the starting hammerhead as fitness increased. This study demonstrates the critical importance of replication fidelity for maintaining heritable information in an RNA-based evolving system, such as is thought to have existed during the early history of life on Earth. Attempts to recreate RNA-based life in the laboratory must achieve further improvements in replication fidelity to enable the fully autonomous Darwinian evolution of RNA enzymes as complex as the polymerase itself.
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页数:11
相关论文
共 34 条
[21]   Real ribozymes suggest a relaxed error threshold [J].
Kun, A ;
Santos, M ;
Szathmáry, E .
NATURE GENETICS, 2005, 37 (09) :1008-1011
[22]  
Langmead B, 2012, NAT METHODS, V9, P357, DOI [10.1038/NMETH.1923, 10.1038/nmeth.1923]
[23]  
Nei M., 2019, Molecular Evolutionary Genetics
[24]   MOLECULAR REPLICATION [J].
ORGEL, LE .
NATURE, 1992, 358 (6383) :203-209
[25]  
Papastavrou Nikos, 2023, Dryad, DOI 10.5061/DRYAD.RXWDBRVGS
[26]  
Portillo X, 2021, ELIFE, V10, DOI [10.7554/eLife.71557, 10.7554/eLife.71557.sa1, 10.7554/eLife.71557.sa2]
[27]   Nonenzymatic copying of RNA templates containing all four letters is catalyzed by activated oligonucleotides [J].
Prywes, Noam ;
Blain, J. Craig ;
Del Frate, Francesca ;
Szostak, Jack W. .
ELIFE, 2016, 5
[28]   SEQUENCE REQUIREMENTS OF THE HAMMERHEAD RNA SELF-CLEAVAGE REACTION [J].
RUFFNER, DE ;
STORMO, GD ;
UHLENBECK, OC .
BIOCHEMISTRY, 1990, 29 (47) :10695-10702
[29]   THE NEIGHBOR-JOINING METHOD - A NEW METHOD FOR RECONSTRUCTING PHYLOGENETIC TREES [J].
SAITOU, N ;
NEI, M .
MOLECULAR BIOLOGY AND EVOLUTION, 1987, 4 (04) :406-425
[30]  
Szostak JW, 2012, J Syst Chem, V3, P1, DOI [DOI 10.1186/1759-2208-3-2, 10.1186/1759-2208-3-2]