Publications

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Journal Article
A. L. Kiss, Hornung, B., Rádi, K., Gengeliczki, Z., Sztáray, B., Juhász, T., Szeltner, Z., Harmat, V., and Polgár, L., The Acylaminoacyl Peptidase from Aeropyrum pernix K1 Thought to Be an Exopeptidase Displays Endopeptidase Activity, Journal of Molecular BiologyJournal of Molecular Biology, vol. 368, no. 2, pp. 509-520, 2007.
Z. Szeltner, Rea, D., Juhász, T., Renner, V., Fülöp, V., and Polgár, L., Concerted Structural Changes in the Peptidase and the Propeller Domains of Prolyl Oligopeptidase are Required for Substrate Binding, Journal of Molecular BiologyJournal of Molecular Biology, vol. 340, no. 3, pp. 627-637, 2004.
M. Fuxreiter, Magyar, C., Juhász, T., Szeltner, Z., Polgár, L., and Simon, I., Flexibility of prolyl oligopeptidase: Molecular dynamics and molecular framework analysis of the potential substrate pathways, Proteins: Structure, Function, and BioinformaticsProteins: Structure, Function, and Bioinformatics, vol. 60, no. 3, pp. 504-512, 2005.
Z. Szeltner, Morawski, M., Juhász, T., Szamosi, I., Liliom, K., Csizmók, V., Tölgyesi, F., and Polgár, L., GAP43 shows partial co-localisation but no strong physical interaction with prolyl oligopeptidase, Biochimica et Biophysica Acta (BBA) - Proteins and ProteomicsBiochimica et Biophysica Acta (BBA) - Proteins and Proteomics, vol. 1804, no. 12, pp. 2162-2176, 2010.
D. N. Okamoto, Oliveira, L. C. G., Kondo, M. Y., Cezari, M. H. S., Szeltner, Z., Juhász, T., Juliano, M. A., Polgár, L., Juliano, L., and Gouvea, I. E., Increase of SARS-CoV 3CL peptidase activity due to macromolecular crowding effects in the milieu composition, Biological ChemistryBiological Chemistry, vol. 391, no. 12, 2010.
I. E. Gouvea, Judice, W. A. S., Cezari, M. H. S., Juliano, M. A., Juhász, T., Szeltner, Z., Polgár, L., and Juliano, L., Kosmotropic Salt Activation and Substrate Specificity of Poliovirus Protease 3C , BiochemistryBiochemistry, vol. 45, no. 39, pp. 12083-12089, 2006.
Z. Szeltner, Juhász, T., Szamosi, I., Rea, D., Fülöp, V., Módos, K., Juliano, L., and Polgár, L., The loops facing the active site of prolyl oligopeptidase are crucial components in substrate gating and specificity, Biochimica et Biophysica Acta (BBA) - Proteins and ProteomicsBiochimica et Biophysica Acta (BBA) - Proteins and Proteomics, vol. 1834, no. 1, pp. 98-111, 2013.
T. Juhász, Szeltner, Z., and Polgár, L., Properties of the prolyl oligopeptidase homologue from Pyrococcus furiosus, FEBS LettersFEBS Letters, vol. 580, no. 14, pp. 3493-3497, 2006.
T. Juhász, Szeltner, Z., Renner, V., and Polgár, L., Role of the Oxyanion Binding Site and Subsites S1 and S2 in the Catalysis of Oligopeptidase B, a Novel Target for Antimicrobial Chemotherapy, BiochemistryBiochemistry, vol. 41, no. 12, pp. 4096-4106, 2002.
Z. Szeltner, Rea, D., Juhász, T., Renner, V., Mucsi, Z., Orosz, G., Fülöp, V., and Polgár, L., Substrate-dependent Competency of the Catalytic Triad of Prolyl Oligopeptidase, Journal of Biological ChemistryJournal of Biological Chemistry, vol. 277, no. 47, pp. 44597-44605, 2002.
T. Juhász, Szeltner, Z., and Polgár, L., Truncated prolyl oligopeptidase from Pyrococcus furiosus, Proteins: Structure, Function, and BioinformaticsProteins: Structure, Function, and Bioinformatics, vol. 69, no. 3, pp. 633-643, 2007.
T. Juhász, Szeltner, Z., Fülöp, V., and Polgár, L., Unclosed β-Propellers Display Stable Structures: Implications for Substrate Access to the Active Site of Prolyl Oligopeptidase, Journal of Molecular BiologyJournal of Molecular Biology, vol. 346, no. 3, pp. 907-917, 2005.