4htu Citations

Structure, stability and function of 5-chlorouracil modified A:U and G:U base pairs.

OpenAccess logo Nucleic Acids Res 41 2689-97 (2013)
Related entries: 4hue, 4huf, 4hug

Cited: 6 times
EuropePMC logo PMID: 23275540

Abstract

The thymine analog 5-chlorouridine, first reported in the 1950s as anti-tumor agent, is known as an effective mutagen, clastogen and toxicant as well as an effective inducer of sister-chromatid exchange. Recently, the first microorganism with a chemically different genome was reported; the selected Escherichia coli strain relies on the four building blocks 5-chloro-2'-deoxyuridine (ClU), A, C and G instead of the standard T, A, C, G alphabet [Marlière,P., Patrouix,J., Döring,V., Herdewijn,P., Tricot,S., Cruveiller,S., Bouzon,M. and Mutzel,R. (2011) Chemical evolution of a bacterium's genome. Angew. Chem. Int. Ed., 50, 7109-7114]. The residual fraction of T in the DNA of adapted bacteria was <2% and the switch from T to ClU was accompanied by a massive number of mutations, including >1500 A to G or G to A transitions in a culture. The former is most likely due to wobble base pairing between ClU and G, which may be more common for ClU than T. To identify potential changes in the geometries of base pairs and duplexes as a result of replacement of T by ClU, we determined four crystal structures of a B-form DNA dodecamer duplex containing ClU:A or ClU:G base pairs. The structures reveal nearly identical geometries of these pairs compared with T:A or T:G, respectively, and no consequences for stability and cleavage by an endonuclease (EcoRI). The lack of significant changes in the geometry of ClU:A and ClU:G base pairs relative to the corresponding native pairs is consistent with the sustained unlimited self-reproduction of E. coli strains with virtually complete T→ClU genome substitution.

Articles - 4htu mentioned but not cited (2)

  1. Flexibility-rigidity index for protein-nucleic acid flexibility and fluctuation analysis. Opron K, Xia K, Burton Z, Wei GW. J Comput Chem 37 1283-1295 (2016)
  2. Structure, stability and function of 5-chlorouracil modified A:U and G:U base pairs. Patra A, Harp J, Pallan PS, Zhao L, Abramov M, Herdewijn P, Egli M. Nucleic Acids Res 41 2689-2697 (2013)


Articles citing this publication (4)

  1. The 5-chlorouracil:7-deazaadenine base pair as an alternative to the dT:dA base pair. Eremeeva E, Abramov M, Marlière P, Herdewijn P. Org Biomol Chem 15 168-176 (2016)
  2. Modulation of BACE1 Activity by Chemically Modified Aptamers. Gasse C, Zaarour M, Noppen S, Abramov M, Marlière P, Liekens S, De Strooper B, Herdewijn P. Chembiochem 19 754-763 (2018)
  3. Factors Governing the Chemical Stability and NMR Parameters of Uracil Tautomers and Its 5-Halogen Derivatives. Rzepiela K, Buczek A, Kupka T, Broda MA. Molecules 25 E3931 (2020)
  4. A Comprehensive Ab Initio Study of Halogenated A···U and G···C Base Pair Geometries and Energies. Gomila RM, Frontera A, Bauzá A. Int J Mol Sci 24 5530 (2023)