Richard H. Buckingham
Affiliations: | Institut de Biologie Physico-Chimique |
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Graille M, Figaro S, Kervestin S, et al. (2012) Methylation of class I translation termination factors: structural and functional aspects. Biochimie. 94: 1533-43 |
Kervestin S, Li C, Buckingham R, et al. (2012) Testing the faux-UTR model for NMD: analysis of Upf1p and Pab1p competition for binding to eRF3/Sup35p. Biochimie. 94: 1560-71 |
Liger D, Mora L, Lazar N, et al. (2011) Mechanism of activation of methyltransferases involved in translation by the Trm112 'hub' protein. Nucleic Acids Research. 39: 6249-59 |
Diago-Navarro E, Mora L, Buckingham RH, et al. (2009) Novel Escherichia coli RF1 mutants with decreased translation termination activity and increased sensitivity to the cytotoxic effect of the bacterial toxins Kid and RelE. Molecular Microbiology. 71: 66-78 |
Figaro S, Scrima N, Buckingham RH, et al. (2008) HemK2 protein, encoded on human chromosome 21, methylates translation termination factor eRF1. Febs Letters. 582: 2352-6 |
Mora L, Klepsch M, Buckingham RH, et al. (2008) Dual roles of the central domain of colicin D tRNase in TonB-mediated import and in immunity. The Journal of Biological Chemistry. 283: 4993-5003 |
Mora L, Heurgué-Hamard V, de Zamaroczy M, et al. (2007) Methylation of bacterial release factors RF1 and RF2 is required for normal translation termination in vivo. The Journal of Biological Chemistry. 282: 35638-45 |
Heurgué-Hamard V, Graille M, Scrima N, et al. (2006) The zinc finger protein Ynr046w is plurifunctional and a component of the eRF1 methyltransferase in yeast. The Journal of Biological Chemistry. 281: 36140-8 |
Vestergaard B, Sanyal S, Roessle M, et al. (2005) The SAXS solution structure of RF1 differs from its crystal structure and is similar to its ribosome bound cryo-EM structure. Molecular Cell. 20: 929-38 |
Graille M, Heurgué-Hamard V, Champ S, et al. (2005) Molecular basis for bacterial class I release factor methylation by PrmC. Molecular Cell. 20: 917-27 |