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Margarida Saramago

Showing results (11-20 of 24) with videos related to

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Microbiological Research|April 18, 2026
RNase III influences microaerobic symbiotic pathways and RNA regulation in Sinorhizobium melilotiSabina K Guedes-García, Natalia I García-Tomsig, Rute G Matos, et al.
Microorganisms|November 24, 2022
Developing New Tools to Fight Human Pathogens: A Journey through the Advances in RNA TechnologiesVanessa G Costa, Susana M Costa, Margarida Saramago, et al.
Protein Science : a Publication of the Protein Society|November 25, 2024
Structure-function mapping and mechanistic insights on the SARS CoV2 Nsp1Bruno A Salgueiro, Margarida Saramago, Mark D Tully, et al.
Genes|October 26, 2024
A Comparative Overview of the Role of Human Ribonucleases in Nonsense-Mediated mRNA DecayPaulo J da Costa, Juliane Menezes, Raquel Guedes, et al.
Nucleic Acids Research|February 10, 2017
Sinorhizobium meliloti YbeY is an endoribonuclease with unprecedented catalytic features, acting as silencing enzyme in riboregulationMargarida Saramago, Alexandra Peregrina, Marta Robledo, et al.
Current Opinion in Microbiology|April 8, 2014
The role of RNases in the regulation of small RNAsMargarida Saramago, Cátia Bárria, Ricardo F Dos Santos, et al.
Microorganisms|February 25, 2022
The nsp15 Nuclease as a Good Target to Combat SARS-CoV-2: Mechanism of Action and Its Inactivation with FDA-Approved DrugsMargarida Saramago, Vanessa G Costa, Caio S Souza, et al.
Biochemical and Biophysical Research Communications|August 31, 2019
A role for DIS3L2 over natural nonsense-mediated mRNA decay targets in human cellsPaulo J da Costa, Juliane Menezes, Margarida Saramago, et al.
Data in Brief|December 31, 2019
Experimental supporting data on DIS3L2 over nonsense-mediated mRNA decay targets in human cellsPaulo J da Costa, Juliane Menezes, Margarida Saramago, et al.
The FEBS Journal|March 11, 2021
New targets for drug design: importance of nsp14/nsp10 complex formation for the 3'-5' exoribonucleolytic activity on SARS-CoV-2Margarida Saramago, Cátia Bárria, Vanessa G Costa, et al.
Pageof 3

Showing results (11-20 of 24) with videos related to

Sort By:
Pageof 3
Microbiological Research|April 18, 2026
RNase III influences microaerobic symbiotic pathways and RNA regulation in Sinorhizobium melilotiSabina K Guedes-García, Natalia I García-Tomsig, Rute G Matos, et al.
Microorganisms|November 24, 2022
Developing New Tools to Fight Human Pathogens: A Journey through the Advances in RNA TechnologiesVanessa G Costa, Susana M Costa, Margarida Saramago, et al.
Protein Science : a Publication of the Protein Society|November 25, 2024
Structure-function mapping and mechanistic insights on the SARS CoV2 Nsp1Bruno A Salgueiro, Margarida Saramago, Mark D Tully, et al.
Genes|October 26, 2024
A Comparative Overview of the Role of Human Ribonucleases in Nonsense-Mediated mRNA DecayPaulo J da Costa, Juliane Menezes, Raquel Guedes, et al.
Nucleic Acids Research|February 10, 2017
Sinorhizobium meliloti YbeY is an endoribonuclease with unprecedented catalytic features, acting as silencing enzyme in riboregulationMargarida Saramago, Alexandra Peregrina, Marta Robledo, et al.
Current Opinion in Microbiology|April 8, 2014
The role of RNases in the regulation of small RNAsMargarida Saramago, Cátia Bárria, Ricardo F Dos Santos, et al.
Microorganisms|February 25, 2022
The nsp15 Nuclease as a Good Target to Combat SARS-CoV-2: Mechanism of Action and Its Inactivation with FDA-Approved DrugsMargarida Saramago, Vanessa G Costa, Caio S Souza, et al.
Biochemical and Biophysical Research Communications|August 31, 2019
A role for DIS3L2 over natural nonsense-mediated mRNA decay targets in human cellsPaulo J da Costa, Juliane Menezes, Margarida Saramago, et al.
Data in Brief|December 31, 2019
Experimental supporting data on DIS3L2 over nonsense-mediated mRNA decay targets in human cellsPaulo J da Costa, Juliane Menezes, Margarida Saramago, et al.
The FEBS Journal|March 11, 2021
New targets for drug design: importance of nsp14/nsp10 complex formation for the 3'-5' exoribonucleolytic activity on SARS-CoV-2Margarida Saramago, Cátia Bárria, Vanessa G Costa, et al.
Pageof 3