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Frontiers in Chemistry
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May 17, 2021
Peptidyl Activity-Based Probes for Imaging Serine Proteases
Paulina Kasperkiewicz
Biological Chemistry
|
September 5, 2012
Current and prospective applications of non-proteinogenic amino acids in profiling of proteases substrate specificity
Paulina Kasperkiewicz, Anna D Gajda, Marcin Drąg
The FEBS Journal
|
January 5, 2017
Emerging challenges in the design of selective substrates, inhibitors and activity-based probes for indistinguishable proteases
Paulina Kasperkiewicz, Marcin Poreba, Katarzyna Groborz, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
February 26, 2014
Positional scanning substrate combinatorial library (PS-SCL) approach to define caspase substrate specificity
Marcin Poręba, Aleksandra Szalek, Paulina Kasperkiewicz, et al.
Biochimie
|
May 20, 2019
Internally quenched fluorogenic substrates with unnatural amino acids for cathepsin G investigation
Katarzyna Groborz, Sonia Kołt, Paulina Kasperkiewicz, et al.
STAR Protocols
|
July 23, 2023
A protocol for visualizing active cathepsin K in osteoclasts with a quenched-fluorescence-activity-based probe
Aleksandra Korba, Izabela Ciastoń, Joanna Kozieł, et al.
Cell Death & Disease
|
July 18, 2025
Exploring the involvement of serine proteases in neutrophil extracellular traps: a review of mechanisms and implications
Aleksandra Korba-Mikołajczyk, Katarzyna Dominika Służalska, Paulina Kasperkiewicz
Journal of Medicinal Chemistry
|
May 29, 2018
Selective Substrates and Activity-Based Probes for Imaging of the Human Constitutive 20S Proteasome in Cells and Blood Samples
Wioletta Rut, Marcin Poręba, Paulina Kasperkiewicz, et al.
Journal of the American Chemical Society
|
July 4, 2017
Toolbox of Fluorescent Probes for Parallel Imaging Reveals Uneven Location of Serine Proteases in Neutrophils
Paulina Kasperkiewicz, Yoav Altman, Maximiliano D'Angelo, et al.
ACS Chemical Biology
|
January 13, 2015
The elastase-PK101 structure: mechanism of an ultrasensitive activity-based probe revealed
Bernhard C Lechtenberg, Paulina Kasperkiewicz, Howard Robinson, et al.
Page
of 5
Search research articles
Search
Showing results (1-10 of 46) with videos related to
Sort By:
Page
of 5
Frontiers in Chemistry
|
May 17, 2021
Peptidyl Activity-Based Probes for Imaging Serine Proteases
Paulina Kasperkiewicz
Biological Chemistry
|
September 5, 2012
Current and prospective applications of non-proteinogenic amino acids in profiling of proteases substrate specificity
Paulina Kasperkiewicz, Anna D Gajda, Marcin Drąg
The FEBS Journal
|
January 5, 2017
Emerging challenges in the design of selective substrates, inhibitors and activity-based probes for indistinguishable proteases
Paulina Kasperkiewicz, Marcin Poreba, Katarzyna Groborz, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
February 26, 2014
Positional scanning substrate combinatorial library (PS-SCL) approach to define caspase substrate specificity
Marcin Poręba, Aleksandra Szalek, Paulina Kasperkiewicz, et al.
Biochimie
|
May 20, 2019
Internally quenched fluorogenic substrates with unnatural amino acids for cathepsin G investigation
Katarzyna Groborz, Sonia Kołt, Paulina Kasperkiewicz, et al.
STAR Protocols
|
July 23, 2023
A protocol for visualizing active cathepsin K in osteoclasts with a quenched-fluorescence-activity-based probe
Aleksandra Korba, Izabela Ciastoń, Joanna Kozieł, et al.
Cell Death & Disease
|
July 18, 2025
Exploring the involvement of serine proteases in neutrophil extracellular traps: a review of mechanisms and implications
Aleksandra Korba-Mikołajczyk, Katarzyna Dominika Służalska, Paulina Kasperkiewicz
Journal of Medicinal Chemistry
|
May 29, 2018
Selective Substrates and Activity-Based Probes for Imaging of the Human Constitutive 20S Proteasome in Cells and Blood Samples
Wioletta Rut, Marcin Poręba, Paulina Kasperkiewicz, et al.
Journal of the American Chemical Society
|
July 4, 2017
Toolbox of Fluorescent Probes for Parallel Imaging Reveals Uneven Location of Serine Proteases in Neutrophils
Paulina Kasperkiewicz, Yoav Altman, Maximiliano D'Angelo, et al.
ACS Chemical Biology
|
January 13, 2015
The elastase-PK101 structure: mechanism of an ultrasensitive activity-based probe revealed
Bernhard C Lechtenberg, Paulina Kasperkiewicz, Howard Robinson, et al.
Page
of 5