Lista de

dioxygenase
10
"Hydroxylation and translational adaptation to stress: Some answers lie beyond the STOP codon" (2016) Katz, M.J.; Gándara, L.; De Lella Ezcurra, A.L.; Wappner, P. Cellular and Molecular Life Sciences. 73(9):1881-1893
"The N-terminal pre-A region of Mycobacterium tuberculosis 2/2HbN promotes NO-dioxygenase activity" (2016) Pesce, A.;Bustamante, J.P.;Bidon-Chanal, A. (...)Nardini, M. FEBS Journal. 283(2):305-322
"Sudestada1, a Drosophila ribosomal prolyl-hydroxylase required for mRNA translation, cell homeostasis, and organ growth" (2014) Katz, M.J.;Acevedo, J.M.;Loenarz, C. (...)Wappner, P. Proceedings of the National Academy of Sciences of the United States of America. 111(11):4025-4030
"Sudestada1, a Drosophila ribosomal prolyl-hydroxylase required for mRNA translation, cell homeostasis, and organ growth" (2014) Katz, M.J.;Acevedo, J.M.;Loenarz, C. (...)Wappner, P. Proceedings of the National Academy of Sciences of the United States of America. 111(11):4025-4030
"The key role of water in the dioxygenase function of Escherichia coli flavohemoglobin" (2013) Ferreiro, D.N.; Boechi, L.; Estrin, D.A.; Martí, M.A. Journal of Inorganic Biochemistry. 119:75-84
"Substrate stereo-specificity in tryptophan dioxygenase and indoleamine 2,3-dioxygenase" (2010) Capece, L.;Arrar, M.;Roitberg, A.E. (...)Estrin, D.A. Proteins: Structure, Function and Bioinformatics. 78(14):2961-2972
"Role of pre-A motif in nitric oxide scavenging by truncated hemoglobin, HbN, of Mycobacterium tuberculosis" (2009) Lama, A.;Pawaria, S.;Bidon-Chanal, A. (...)Dikshit, K.L. Journal of Biological Chemistry. 284(21):14457-14468
"Role of pre-A motif in nitric oxide scavenging by truncated hemoglobin, HbN, of Mycobacterium tuberculosis" (2009) Lama, A.;Pawaria, S.;Bidon-Chanal, A. (...)Dikshit, K.L. Journal of Biological Chemistry. 284(21):14457-14468
"Ligand-induced dynamical regulation of NO conversion in Mycobacterium tuberculosis truncated hemoglobin-N" (2006) Bidon-Chanal, A.;Martí, M.A.;Crespo, A. (...)Estrin, D.A. Proteins: Structure, Function and Genetics. 64(2):457-464