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European Journal of Biochemistry|May 22, 2004
Structure and function of plant aspartic proteinasesIsaura Simões, Carlos FaroApplied Microbiology and Biotechnology|April 27, 2018
Cardoon-based rennets for cheese productionCarla Malaquias Almeida, Isaura SimõesTropical Medicine and Infectious Disease|February 24, 2022
Moonlighting in Rickettsiales: Expanding Virulence LandscapeAna Luísa Matos, Pedro Curto, Isaura SimõesJournal of Experimental Botany|February 5, 2019
Atypical and nucellin-like aspartic proteases: emerging players in plant developmental processes and stress responsesAndré Soares, Sofia M Ribeiro Carlton, Isaura SimõesThe Journal of Biological Chemistry|July 26, 2007
Characterization of recombinant CDR1, an Arabidopsis aspartic proteinase involved in disease resistanceIsaura Simões, Rosário Faro, Daniel Bur, et al.Applied Microbiology and Biotechnology|July 3, 2014
Engineering a cardosin B-derived rennet for sheep and goat cheese manufactureCarla Malaquias Almeida, David Gomes, Carlos Faro, et al.Methods in Molecular Biology (Clifton, N.J.)|May 18, 2022
Expression in Escherichia coli, Refolding, and Purification of Plant Aspartic ProteasesPedro Castanheira, Carla Almeida, Daniela Dias-Pedroso, et al.Frontiers in Cellular and Infection Microbiology|April 27, 2019
Macrophages Infected by a Pathogen and a Non-pathogen Spotted Fever Group Rickettsia Reveal Differential Reprogramming Signatures Early in InfectionPedro Curto, Sean P Riley, Isaura Simões, et al.Microbiology Spectrum|December 22, 2021
Spotted Fever Group Rickettsia Trigger Species-Specific Alterations in Macrophage Proteome Signatures with Different Impacts in Host Innate Inflammatory ResponsesPedro Curto, Cátia Santa, Luísa Cortes, et al.Frontiers in Cellular and Infection Microbiology|August 16, 2016
Differences in Intracellular Fate of Two Spotted Fever Group Rickettsia in Macrophage-Like CellsPedro Curto, Isaura Simões, Sean P Riley, et al.Pageof 3