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Genetic fidelity under harsh conditions: analysis of spontaneous mutation in the thermoacidophilic archaeon Sulfolobus acidocaldarius.
Proc Natl Acad Sci U S A. 2001 Jul 3;98(14):7928-33. doi: 10.1073/pnas.141113098. Epub 2001 Jun 26.
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The genome of Sulfolobus acidocaldarius, a model organism of the Crenarchaeota.
J Bacteriol. 2005 Jul;187(14):4992-9. doi: 10.1128/JB.187.14.4992-4999.2005.
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Homologous recombination in Sulfolobus acidocaldarius: genetic assays and functional properties.
Biochem Soc Trans. 2009 Feb;37(Pt 1):88-91. doi: 10.1042/BST0370088.
6
Homologous recombination of exogenous DNA with the Sulfolobus acidocaldarius genome: properties and uses.
FEMS Microbiol Lett. 2005 Dec 1;253(1):141-9. doi: 10.1016/j.femsle.2005.09.031. Epub 2005 Oct 11.
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The rate and character of spontaneous mutation in Thermus thermophilus.
Genetics. 2008 Sep;180(1):17-25. doi: 10.1534/genetics.108.089086. Epub 2008 Aug 24.
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Molecular characteristics of spontaneous deletions in the hyperthermophilic archaeon Sulfolobus acidocaldarius.
J Bacteriol. 2003 Feb;185(4):1266-72. doi: 10.1128/JB.185.4.1266-1272.2003.

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Archaeal replicative primase mediates DNA double-strand break repair.
Nucleic Acids Res. 2025 Apr 22;53(8). doi: 10.1093/nar/gkaf322.
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A thermophilic 8-oxoguanine DNA glycosylase from Thermococcus barophilus Ch5 is a new member of AGOG DNA glycosylase family.
Acta Biochim Biophys Sin (Shanghai). 2022 Jun 25;54(12):1801-10. doi: 10.3724/abbs.2022072.
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Genomic attributes of thermophilic and hyperthermophilic bacteria and archaea.
World J Microbiol Biotechnol. 2022 Jun 13;38(8):135. doi: 10.1007/s11274-022-03327-z.
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Identifying protein function and functional links based on large-scale co-occurrence patterns.
PLoS One. 2022 Mar 3;17(3):e0264765. doi: 10.1371/journal.pone.0264765. eCollection 2022.
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Repair of Hypoxanthine in DNA Revealed by DNA Glycosylases and Endonucleases From Hyperthermophilic Archaea.
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Identification of a novel bifunctional uracil DNA glycosylase from Thermococcus barophilus Ch5.
Appl Microbiol Biotechnol. 2021 Jul;105(13):5449-5460. doi: 10.1007/s00253-021-11422-8. Epub 2021 Jul 5.
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Control of Genome Stability by EndoMS/NucS-Mediated Non-Canonical Mismatch Repair.
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Genome size evolution in the Archaea.
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Characterization of intragenic recombination in a hyperthermophilic archaeon via conjugational DNA exchange.
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DNA replication fidelity.
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Thermus aquaticus DNA polymerase I mutants with altered fidelity. Interacting mutations in the O-helix.
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The question of DNA repair in hyperthermophilic archaea.
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The stability of proteins in extreme environments.
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Hyperthermophiles and the problem of DNA instability.
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Rates of spontaneous mutation.
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Aspects of the ultraviolet photobiology of some T-even bacteriophages.
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Cell cycle characteristics of thermophilic archaea.
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