Articles dans des revues avec comité de lecture (81)

  1. 35. Hadži, S., Garcia-Pino, A., Haesaerts, S., Jurenas, D., Gerdes, K., Lah, J., & Loris, R. (2017). Ribosome-dependent Vibrio cholerae mRNAse HigB2 is regulated by a β-strand sliding mechanism. Nucleic acids research, 45(8), 4972-4983. doi:10.1093/nar/gkx138
  2. 36. Jurenas, D., Chatterjee, S., Konijnenberg, A., Sobott, F., Droogmans, L., Garcia-Pino, A., & Van Melderen, L. (2017). AtaT blocks translation by N-acetylation of the initiator tRNA-fMet. Nature Chemical Biology. doi:10.1038/nchembio.2346
  3. 37. Garcia-Pino, A., De Gieter, S., Talavera, A., De Greve, H., Efremov, R., & Loris, R. (2016). An intrinsically disordered entropic switch determines allostery in Phd-Doc regulation. Nature Chemical Biology, 12(7), 490-496. doi:10.1038/nchembio.2078
  4. 38. Egea-Jimenez, A. L., Gallardo, R., Garcia-Pino, A., Ivarsson, Y., Wawrzyniak, A. M., Kashyap, R., Loris, R., Schymkowitz, J. J., Rousseau, F., & Zimmermann, P. (2016). Frizzled 7 and PIP2 binding by syntenin PDZ2 domain supports Frizzled 7 trafficking and signalling. Nature communications, 7, 12101. doi:10.1038/ncomms12101
  5. 39. Zorzini, V., Mernik, A., Lah, J., Sterckx, Y. G. J., De Jonge, N., Garcia-Pino, A., De Greve, H., Versées, W., & Loris, R. (2016). Substrate Recognition and Activity Regulation of the Escherichia coli mRNA Endonuclease MazF. The Journal of biological chemistry, 291(21), 10950-10960. doi:10.1074/jbc.M116.715912
  6. 40. Sterckx, Y., Loris, R., Jove, T., Shkumatov, A. A., Garcia-Pino, A., Geerts, L., De Kerpel, M., Lah, J., De Greve, H., & Van Melderen, L. (2016). A unique hetero-hexadecameric architecture displayed by the Escherichia coli O157 PaaA2-ParE2 antitoxin-toxin complex. Journal of Molecular Biology, 428(8), 1589-1603. doi:10.1016/j.jmb.2016.03.007
  7. 41. Huculeci, R., Garcia-Pino, A., Buts, L., Lenaerts, T., & van Nuland, N. A. J. (2015). Structural insights into the intertwined dimer of fyn SH2. Protein science, 24(12), 1964-1978. doi:10.1002/pro.2806
  8. 42. Hadǽi, S., Garcia-Pino, A., Gerdes, K., Lah, J., & Loris, R. (2015). Crystallization of two operator complexes from the Vibrio cholerae HigBA2 toxin-antitoxin module. Acta crystallographica. Section F, Structural biology communications, 71(Pt 2), 226-233. doi:10.1107/S2053230X15000746
  9. 43. Sterckx, Y. G. J., De Gieter, S., Zorzini, V., Hadži, S., Haesaerts, S., Loris, R., & Garcia-Pino, A. (2015). An efficient method for the purification of proteins from four distinct toxin-antitoxin modules. Protein expression and purification, 108C, 30-40. doi:10.1016/j.pep.2015.01.001
  10. 44. De Gieter, S., Konijnenberg, A., Talavera, A., Butterer, A., Haesaerts, S., De Greve, H., Sobott, F., Loris, R., & Garcia-Pino, A. (2014). The intrinsically disordered domain of the antitoxin Phd chaperones the toxin Doc against irreversible inactivation and misfolding. The Journal of biological chemistry, 289(49), 34013-34023. doi:10.1074/jbc.M114.572396
  11. 45. Bethuyne, J., De Gieter, S., Zwaenepoel, O., Garcia-Pino, A., Durinck, K., Verhelle, A., Hassanzadeh-Ghassabeh, G., Speleman, F., Loris, R., & Gettemans, J. (2014). A nanobody modulates the p53 transcriptional program without perturbing its functional architecture. Nucleic acids research, 42(20), 12928-12938. doi:10.1093/nar/gku962
  12. 46. Loris, R., & Garcia-Pino, A. (2014). Disorder- and dynamics-based regulatory mechanisms in toxin-antitoxin modules. Chemical reviews, 114(13), 6933-6947. doi:10.1021/cr400656f

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