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Marcin Drag

Showing results (101-110 of 121) with videos related to

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Nature Communications|August 3, 2018
SUMO-mediated regulation of NLRP3 modulates inflammasome activityRachael Barry, Sidonie Wicky John, Gianmaria Liccardi, et al.
Nanoscale|December 20, 2018
Development of an advanced nanoformulation for the intracellular delivery of a caspase-3 selective activity-based probeFrancesco Cogo, Marcin Poreba, Wioletta Rut, et al.
ACS Infectious Diseases|October 15, 2016
Design of Selective Substrates and Activity-Based Probes for Hydrolase Important for Pathogenesis 1 (HIP1) from Mycobacterium tuberculosisChristian S Lentz, Alvaro A Ordonez, Paulina Kasperkiewicz, et al.
Biorxiv : the Preprint Server for Biology|October 1, 2025
A Robust Fluorogenic Substrate for Chikungunya Virus Protease (nsP2) ActivitySparsh Makhaik, Wioletta Rut, Shruti Choudhary, et al.
The Journal of Biological Chemistry|April 10, 2014
Staphylococcal SplB serine protease utilizes a novel molecular mechanism of activationKatarzyna Pustelny, Michal Zdzalik, Natalia Stach, et al.
Scientific Reports|February 24, 2017
Highly sensitive and adaptable fluorescence-quenched pair discloses the substrate specificity profiles in diverse protease familiesMarcin Poreba, Aleksandra Szalek, Wioletta Rut, et al.
Protein Science : a Publication of the Protein Society|February 21, 2025
A robust fluorogenic substrate for chikungunya virus protease (nsP2) activitySparsh Makhaik, Wioletta Rut, Shruti Choudhary, et al.
ACS Medicinal Chemistry Letters|October 15, 2025
Identification and Exploration of a Series of SARS-Cov‑2 M<sup>Pro</sup> Cyano-Based Inhibitors Revealing Ortho-Substitution Effects within the P3 Biphenyl GroupEmma Clyde-Allen, Mikołaj Zmudzinski, Mohammad Afsar, et al.
Structure (London, England : 1993)|March 13, 2018
Unique Substrate Specificity of SplE Serine Protease from Staphylococcus aureusNatalia Stach, Magdalena Kalinska, Michal Zdzalik, et al.
Trends in Biochemical Sciences|October 3, 2009
Plasmodium falciparum neutral aminopeptidases: new targets for anti-malarialsTina S Skinner-Adams, Colin M Stack, Katharine R Trenholme, et al.
Pageof 13

Showing results (101-110 of 121) with videos related to

Sort By:
Pageof 13
Nature Communications|August 3, 2018
SUMO-mediated regulation of NLRP3 modulates inflammasome activityRachael Barry, Sidonie Wicky John, Gianmaria Liccardi, et al.
Nanoscale|December 20, 2018
Development of an advanced nanoformulation for the intracellular delivery of a caspase-3 selective activity-based probeFrancesco Cogo, Marcin Poreba, Wioletta Rut, et al.
ACS Infectious Diseases|October 15, 2016
Design of Selective Substrates and Activity-Based Probes for Hydrolase Important for Pathogenesis 1 (HIP1) from Mycobacterium tuberculosisChristian S Lentz, Alvaro A Ordonez, Paulina Kasperkiewicz, et al.
Biorxiv : the Preprint Server for Biology|October 1, 2025
A Robust Fluorogenic Substrate for Chikungunya Virus Protease (nsP2) ActivitySparsh Makhaik, Wioletta Rut, Shruti Choudhary, et al.
The Journal of Biological Chemistry|April 10, 2014
Staphylococcal SplB serine protease utilizes a novel molecular mechanism of activationKatarzyna Pustelny, Michal Zdzalik, Natalia Stach, et al.
Scientific Reports|February 24, 2017
Highly sensitive and adaptable fluorescence-quenched pair discloses the substrate specificity profiles in diverse protease familiesMarcin Poreba, Aleksandra Szalek, Wioletta Rut, et al.
Protein Science : a Publication of the Protein Society|February 21, 2025
A robust fluorogenic substrate for chikungunya virus protease (nsP2) activitySparsh Makhaik, Wioletta Rut, Shruti Choudhary, et al.
ACS Medicinal Chemistry Letters|October 15, 2025
Identification and Exploration of a Series of SARS-Cov‑2 M<sup>Pro</sup> Cyano-Based Inhibitors Revealing Ortho-Substitution Effects within the P3 Biphenyl GroupEmma Clyde-Allen, Mikołaj Zmudzinski, Mohammad Afsar, et al.
Structure (London, England : 1993)|March 13, 2018
Unique Substrate Specificity of SplE Serine Protease from Staphylococcus aureusNatalia Stach, Magdalena Kalinska, Michal Zdzalik, et al.
Trends in Biochemical Sciences|October 3, 2009
Plasmodium falciparum neutral aminopeptidases: new targets for anti-malarialsTina S Skinner-Adams, Colin M Stack, Katharine R Trenholme, et al.
Pageof 13